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SMU02C V500R003C10 Site Monitoring Unit

User Manual

Issue

01

Date

2020-05-30

HUAWEI TECHNOLOGIES CO., LTD.

Copyright © Huawei Technologies Co., Ltd. 2020. All rights reserved. No part of this document may be reproduced or transmitted in any form or by any means without prior written consent of Huawei Technologies Co., Ltd.

Trademarks and Permissions and other Huawei trademarks are trademarks of Huawei Technologies Co., Ltd. All other trademarks and trade names mentioned in this document are the property of their respective holders.

Notice The purchased products, services and features are stipulated by the contract made between Huawei and the customer. All or part of the products, services and features described in this document may not be within the purchase scope or the usage scope. Unless otherwise specified in the contract, all statements, information, and recommendations in this document are provided "AS IS" without warranties, guarantees or representations of any kind, either express or implied. The information in this document is subject to change without notice. Every effort has been made in the preparation of this document to ensure accuracy of the contents, but all statements, information, and recommendations in this document do not constitute a warranty of any kind, express or implied.

Huawei Technologies Co., Ltd. Address:

Huawei Industrial Base Bantian, Longgang Shenzhen 518129 People's Republic of China

Website:

https://e.huawei.com

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Preface

Preface Purpose This document describes the site monitoring unit SMU in terms of its hardware, liquid crystal display (LCD), web user interface (WebUI), common operations, remote management, and replacement. This document describes all the functions of the SMU. Some functions are implemented by hardware (such as the DC meter and battery cell detector). If the corresponding hardware is not connected to the SMU, the function is not available. Figures in this manual are for reference only.

Intended Audience This document is intended for: 

Sales engineers



Technical support personnel



Maintenance personnel

Symbol Conventions The symbols that may be found in this document are defined as follows. Symbol

Description Indicates a hazard with a high level of risk which, if not avoided, will result in death or serious injury. Indicates a hazard with a medium level of risk which, if not avoided, could result in death or serious injury. Indicates a hazard with a low level of risk which, if not avoided, could result in minor or moderate injury. Indicates a potentially hazardous situation which, if not avoided, could result in equipment damage, data loss, performance deterioration, or unanticipated results. NOTICE is used to address practices not related to personal injury.

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Symbol

Preface

Description Supplements the important information in the main text. NOTE is used to address information not related to personal injury, equipment damage, and environment deterioration.

Change History Changes between document issues are cumulative. The latest document issue contains all the changes made in earlier issues.

Issue 01 (2020-05-30) This is the first official release.

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Contents

Contents Preface.......................................................................................................................................... ii 1 Product Overview..................................................................................................................... 1 2 Component Description .......................................................................................................... 3 2.1 SMU02C ............................................................................................................................................................... 3 2.2 WIM01C1 ............................................................................................................................................................. 7 2.3 UIM02C ................................................................................................................................................................ 9 2.4 UIM02D...............................................................................................................................................................12 2.5 UIM03D...............................................................................................................................................................16 2.6 UIM05B1 .............................................................................................................................................................20 2.7 NIM02D...............................................................................................................................................................24 2.8 NIM01C3 .............................................................................................................................................................25 2.9 CIM02C ...............................................................................................................................................................28 2.10 GIM01C .............................................................................................................................................................31

3 User Interfaces ........................................................................................................................ 33 3.1 LCD .....................................................................................................................................................................33 3.1.1 Setup Wizard .....................................................................................................................................................33 3.1.2 Modifying the display language .........................................................................................................................34 3.1.3 Restart Button....................................................................................................................................................35 3.1.4 Password ...........................................................................................................................................................35 3.1.5 Standby Screen ..................................................................................................................................................35 3.2 WebUI ..................................................................................................................................................................36 3.2.1 Connecting a Communications Cable .................................................................................................................36 3.2.2 Setting Parameters .............................................................................................................................................36 3.2.3 Logging In to the WebUI ...................................................................................................................................37

4 NMS Management ................................................................................................................. 39 4.1 U2000-SPM Management.....................................................................................................................................39 4.1.1 Connecting a Communications Cable .................................................................................................................39 4.1.2 Setting Parameters .............................................................................................................................................40 4.2 NetEco Management ............................................................................................................................................40 4.2.1 IP Networking ...................................................................................................................................................40 4.2.2 Wireless Networking..........................................................................................................................................41

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Contents

4.2.3 BBU In-band Networking ..................................................................................................................................44 4.2.4 Logging In to the NetEco ...................................................................................................................................45 4.3 NMS Management over SNMP.............................................................................................................................46 4.3.1 Site Configuration .............................................................................................................................................46 4.3.1.1 Connecting a Communications Cable ..............................................................................................................46 4.3.1.2 Setting Parameters ..........................................................................................................................................47 4.3.2 Setting SNMP Parameters ..................................................................................................................................47 4.3.3 NMS Commissioning ........................................................................................................................................52 4.4 NMS Management over YDN1363 Protocol .........................................................................................................52 4.4.1 Connecting a Communications Cable .................................................................................................................52 4.4.2 Setting Parameters .............................................................................................................................................53 4.5 NMS Management over Modbus ..........................................................................................................................54 4.5.1 Connecting a Communications Cable .................................................................................................................54 4.5.2 Setting Parameters .............................................................................................................................................54 4.6 NMS Management over TCP-Modbus ..................................................................................................................55 4.6.1 Connecting a Communications Cable .................................................................................................................55 4.6.2 Setting Parameters .............................................................................................................................................55

5 Common Tasks ....................................................................................................................... 57 5.1 Common Installation Tasks ...................................................................................................................................57 5.1.1 Using a USB Flash Drive for Site Deployment ...................................................................................................57 5.1.2 Setting the Time Zone and Time.........................................................................................................................58 5.1.3 Setting Basic Battery Parameters........................................................................................................................58 5.1.4 Setting the Alarm Enable Option, Alarm Severity, and Associated Relays ...........................................................60 5.1.5 Setting Alarm Parameters for Dry Contacts ........................................................................................................61 5.1.6 Setting Rectifier Addresses ................................................................................................................................62 5.1.7 Setting Basic DG Parameters .............................................................................................................................63 5.1.8 Starting a Genset Self-Check..............................................................................................................................65 5.1.9 Setting WiFi Parameters.....................................................................................................................................67 5.2 Common Maintenance Tasks ................................................................................................................................68 5.2.1 Backing Up the Current Settings ........................................................................................................................68 5.2.2 Importing a Configuration File ...........................................................................................................................68 5.2.3 Restoring Factory Defaults.................................................................................................................................69 5.2.4 Upgrading Software ...........................................................................................................................................70 5.2.5 Changing a User Password .................................................................................................................................70 5.2.6 Viewing Dry Contact Association Information ....................................................................................................72 5.2.7 Viewing Active Alarms ......................................................................................................................................73 5.2.8 Viewing Historical Alarms .................................................................................................................................74 5.2.9 Viewing Version Information .............................................................................................................................75 5.2.10 Exporting Maintenance Information .................................................................................................................75

6 Hardware Replacement ......................................................................................................... 78 6.1 Replacing an SMU02C .........................................................................................................................................78

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Contents

6.2 Replacing a WIM01C1 .........................................................................................................................................79 6.3 Replacing a UIM02C Board..................................................................................................................................81 6.4 Replacing a UIM02D Board .................................................................................................................................83 6.5 Replacing an UIM03D Board ...............................................................................................................................85 6.6 Replacing an UIM05B1 ........................................................................................................................................87 6.7 Replacing an NIM02D Board ...............................................................................................................................88 6.8 Replacing an NIM01C3 ........................................................................................................................................89 6.9 Replacing a CIM02C ............................................................................................................................................91 6.10 Replacing a GIM01C ..........................................................................................................................................92

A Parameter Lists ...................................................................................................................... 93 A.1 LCD Menu Hierarchy ..........................................................................................................................................93 A.2 Running Information ...........................................................................................................................................94 A.3 Setting Wizard ................................................................................................................................................... 108 A.4 Parameters Settings............................................................................................................................................ 111 A.5 Running Control ................................................................................................................................................ 177 A.6 Site Maintain ..................................................................................................................................................... 182 A.7 User Management .............................................................................................................................................. 183

B Technical Specifications ..................................................................................................... 184 C FAQ ....................................................................................................................................... 185 C.1 How Do I Prepare the WebUI Operating Environment? ...................................................................................... 185 C.2 What Should I Do If I Forgot the Password? ....................................................................................................... 189

D Acronyms and Abbreviations............................................................................................ 190

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1 Product Overview

1

Product Overview

Figure 1-1 Monitoring unit panel

(1) Slots for the communications expansion module and DG expansion module

(2) SMU02C

(3) The user interface module (compatible with the NIM02D)

The NIM01C3 can be installed only in the upper slot. The CIM02C can be installed either in the upper or lower slot. Table 1-1 Monitoring unit configure Monitoring Unit

Function Introduction

SMU02C

The SMU02C (SMU for short) is a compact high-end monitoring module that monitors and manages Huawei's box-type and cabinet-type power systems. The SMU can manage a site power system through the liquid crystal display (LCD), web user interface (WebUI) and Huawei NetEco.

UIM02C, UIM02D, UIM03D, and UIM05B1

It provides sensor ports, RS485 ports, and dry contact input and output ports to manage the interior environment of the power system and to report alarms.

NIM02D

It provides sensor ports, and FE ports to connect the NMS or smart device such as an IP camera.

NIM01C3

It is mainly used for 4G communication. It can also extend the

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Monitoring Unit

1 Product Overview

Function Introduction RS485/CAN port of the main control board or extend the southbound communication equipment.

CIM02C

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It is used to extend the RS485/CAN port of the main control board and provides 12 V power supply for the southbound equipment.

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2 Component Description

2

Component Description

2.1 SMU02C Figure 2-1 SMU02C appearance

(1) SD card slot

(2) Run indicator

(3) Minor alarm indicator

(4) Major alarm indicator

(5) Buttons

(6) USB ports (protected by a security mechanism)

(7) RS485/RS232 port

(8) Fast Ethernet (FE) port

(9) CAN communications port

(10) LCD

Indicators Table 2-1 Indicator description Name

Color

Status

Description

Run indicator

Green

Off

The SMU is faulty or has no DC input.

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Name

2 Component Description

Color

Minor alarm indicator

Yellow

Major alarm indicator

Red

Status

Description

Blinking slowly (0.5 Hz)

The SMU is running properly and communicating with the host properly.

Blinking fast (4 Hz)

The SMU is running properly but fails to communicate with the host properly.

Off

No minor or warning alarm is generated.

Steady on

A minor or warning alarm is generated.

Off

No critical or major alarm is generated.

Steady on

A critical or major alarm is generated.

Buttons Table 2-2 Button description Button

Name

Description

Up Down

Press and to scroll through the menus or to change the value of a parameter.

Cancel

Returns to the previous menu without saving the settings.

Enter



Enters the main menu from the standby screen.



Enters a submenu from the main menu.



Saves menu settings on a submenu.

NOTE  The LCD screen becomes dark if no button is pressed within 30 seconds. 

You need to log in again if no button is pressed within 1 minute.



To increase or decrease a parameter value quickly, hold down



To restart the SMU, hold down



To increase (or decrease) the LCD backlight, hold down seconds.

and

or

.

for 10 seconds. and

(or

) for 2

SD Card Slot SD card is used for storing the camera capture images, maximum support 32 G capacity.

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USB Ports You can quickly deploy a site, import and export configuration files, export running logs, and upgrade software by inserting the USB flash drive that is specially used for site deployment into the USB port. After installing the specific WiFi module using the USB port, you can access the WebUI locally, which facilitates operations.

Using WiFi modules provided by another vendor may cause data loss or function exception. Consequences arising from this will not be borne by Huawei.

Communications Ports Table 2-3 Communications port description Communications Port

Communications Parameter

Communications Protocol

FE

10/100M autonegotiation

HTTPS, NetEco protocol, SNMP, and TCP-Modbus protocol

RS485/RS232

Baud rate: 1200 bit/s, 2400 bit/s, 4800 bit/s, 9600 bit/s, 14400 bit/s, 19200 bit/s, 115200 bit/s

Master/slave protocol, YDN protocol, and Modbus protocol

CAN

Baud rate: 125 kbit/s

CAN protocol

NOTE All these ports are protected by a security mechanism.

Figure 2-2 Communication port pins

Table 2-4 Pin definitions for the FE port Pin

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Signal

Description

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2 Component Description

Pin

Signal

Description

1

TX+

Transmits data over FE

2

TX-

3

RX+

6

RX-

4/5/7/8

NA

Receives data over FE

-

Table 2-5 Pin definitions for the RS485/RS232 port Pin

Signal

Description

1

TX+

Transmits data over RS485

2

TX-

4

RX+

5

RX-

3

RX232

Receives data over RS232

7

TX232

Transmits data over RS232

6

PGND

Connects to the ground

8

NA



Receives data over RS485

Table 2-6 Description for the CAN port pins Pin

Signal

Description

1

RX+

Receives data over RS485

2

RX-

3

NA

-

4

TX+

Sends data over RS485

5

TX-

6

NA

-

7

CANH

CAN high level signal

8

CANL

CAN low level signal

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2.2 WIM01C1 The wireless interface module 01C1 (WIM01C1) is used to transfer signals and supports WiFi access. Figure 2-3 WIM01C1 panel

(1) WiFi indicator

(2) RF indicator

(3) Button

(4) GE cascading port

(5) WiFi antenna port

(6) RF_B antenna port

(7) RF_A antenna port

(8) GE ports

(9) Power port

Indicators and Buttons Table 2-7 RF indicator description Status

Description

Off

There is no power input or the module is faulty.

Steady on

The module does not properly communicate with the host or is not networked.

Blinking at intervals of 2s (on for 1s and then off for 1s)

The module properly communicates with the host.

Blinking at intervals of 0.25s (on for 0.125s and then off for 0.125s)

Networking is in progress.

Blinking at intervals of 0.125s (on for 0.0625s and then off for 0.0625s)

Network parameters are being cleared.

On for 0.25s and off for 0.25s

The module is blinking.

Table 2-8 Button description Action

Function

Description

Hold down

Allow or

When the WIM01C1 is in Disallow Node Networking

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Action

Function

Description

for 3s

disallow node networking

state, if you hold down the button for 3s, the WIM01C1 switches to the Allow Node Networking state and the indicator blinks at short intervals. When the WIM01C1 is in Allow Node Networking state, if you hold down the button for 3s, the WIM01C1 switches to the Disallow Node Networking state. You can determine the current status of the WIM01C1 according to the indicator description.

Hold down for 8s

Erase the network

After you press the button, the indicator blinks for several seconds (blinks for 1s each time). After the indicator blinks for eight times, it will blink at super short intervals for 3s, indicating that network erasing is successful.

Ports Table 2-9 Pin definitions for the GE_CASCADE/GE1/GE2 ports Pin

Signal

Description

1

TRX0+

2

TRX0-

Communications port, 100M/1000M autonegotiation

3

TRX1+

4

TRX2+

5

TRX2-

6

TRX1-

7

TRX3+

8

TRX3-

Table 2-10 48 V power input port description Port Type

Silk Screen

No.

Description

48 V power input port

48V

+

48 V power input, positive

-

48 V power input, negative

WiFi Function You can locally access the WebUI using WiFi.

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2 Component Description



You are advised to periodically change the WiFi password to improve account security and prevent unauthorized network attacks, such as data tampering.



Huawei will not be liable for any loss caused by your failure to change the password in time or to keep the new password properly.



The WiFi function is disabled by default. Enable the WiFi function before using it and disable it after using it to ensure network security.

Enable or disable the WiFi function: choose System Settings > Network Config > WIFI. Change the WiFi account password: choose System Settings > Network Config > WIFI.

2.3 UIM02C Panel Figure 2-4 Panel

(1) Communications port

(2) Dry contact output ports

(3) Dry contact input ports

(4) Sensor ports

Port Description Table 2-11 Port description Port Type

Silk Screen

Remarks

Sensor ports

TEM-HUM

Ambient temperature and humidity sensor

WATER

Water sensor

TEMP1

Temperature sensor 1

TEMP2

Temperature sensor 2

GATE

Door status sensor

SMOKE

Smoke sensor

BTEMP

Battery temperature sensor

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Port Type

Silk Screen

Remarks

Dry contact input ports

DIN1

Dry contact input 1

DIN2

Dry contact input 2

DIN3

Dry contact input 3

DIN4

Dry contact input 4

DIN5

Dry contact input 5

DIN6

Dry contact input 6

ALM1

Dry contact output 1

ALM2

Dry contact output 2

ALM3

Dry contact output 3

ALM4

Dry contact output 4

ALM5

Dry contact output 5

ALM6

Dry contact output 6

ALM7

Dry contact output 7

ALM8

Dry contact output 8

COM

RS485

Dry contact output ports

Communications port

Communications Port Table 2-12 COM port description Communications Port

Communications Parameter

Communications Protocol

Purpose

COM

Baud rate: 1200 bit/s, 2400 bit/s, 4800 bit/s, 9600 bit/s, 14400 bit/s, 19200 bit/s, 115200 bit/s

Master/slave, Modbus and YDN1363 protocols

Connects to a downstream device, such as the intelligent battery detector or intelligent air conditioner.

NOTE The COM port is protected by a security mechanism.

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Figure 2-5 Pins in the COM port

Table 2-13 COM port pin definitions Pin

Signal

Remarks

1

RX+

Receives data over RS485.

2

RX-

4

TX+

5

TX-

6

PGND

Protective ground

3, 7, 8

NA

-

Transmits data over RS485.

Sensor Ports Figure 2-6 Pins in sensor ports

Table 2-14 UIM02C pin definitions Silk Screen

No.

Pins

TEM-HUM

1

12 V

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Silk Screen

WATER

TEMP1

TEMP2

GATE

SMOKE

BTEMP

2 Component Description

No.

Pins

2

ENV_TEMP

3

12 V

4

ENV_HUM

1

12 V

2

WATER

3

GND

4

-

1

GND

2

TEMP1

1

GND

2

TEMP2

1

GATE+

2

GATE-

1

SMOKE

2

12 V

1

GND

2

BTEMP

2.4 UIM02D Panel Figure 2-7 shows a UIM02D panel, and Table 2-15 lists the ports on it. Figure 2-7 UIM02D panel

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Ports Table 2-15 UIM02D port description Port Type

Silk Screen

Description

Sensor port

TEM-HUM

Ambient temperature and humidity sensor

WATER

Water sensor

TEMP1

Temperature sensor 1

TEMP2

Temperature sensor 2

GATE

Door sensor

SMOKE

Smoke sensor

BTEMP

Battery temperature sensor

Dry contact input

DIN1

Dry contact input 1

NOTE For details about the alarms associated with dry contact inputs, see the power system user manual.

DIN2

Dry contact input 2

DIN3

Dry contact input 3

DIN4

Dry contact input 4

DIN5

Dry contact input 5

DIN6

Dry contact input 6

Dry contact output

ALM1

Dry contact output 1

NOTE For details about the alarms associated with dry contact outputs, see the power system user manual.

ALM2

Dry contact output 2

ALM3

Dry contact output 3

ALM4

Dry contact output 4

ALM5

Dry contact output 5

ALM6

Dry contact output 6

ALM7

Dry contact output 7

ALM8

Dry contact output 8

ALM9

Dry contact output 9

ALM10

Dry contact output 10

ALM11

Dry contact output 11

ALM12

Dry contact output 12

COM

RS485 port

Communications port

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Communication Port Table 2-16 COM communication port description Communication Port

Communications Parameter

Communications Protocol

Function

COM port

Baud rate: 1200 bit/s, 2400 bit/s, 4800 bit/s, 9600 bit/s, 14400 bit/s, 19200 bit/s, 115200 bit/s

M/S and Modbus protocol

Connects to lower-level devices such as the battery inspection unit, DC air conditioner

NOTE The COM port supports the security mechanism.

Figure 2-8 Pins in the COM port

Table 2-17 Pin definitions for the COM port Pin

Signal

Description

1

RX+

Receives data over RS485.

2

RX-

4

TX+

5

TX-

6

PGND

Connects to the ground.

3, 7, 8

NA

-

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Sends data over RS485.

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2 Component Description

Pins Figure 2-9 shows the numbers of pins in sensor ports. Table 2-18 describes the pin definitions. Figure 2-9 UIM02D pin numbers

Table 2-18 UIM02D pin definitions Silk Screen

No.

Pin Definition

TEM-HUM

1

12 V

2

ENV_TEMP

3

12 V

4

ENV_HUM

1

12 V

2

WATER

3

GND

4

-

1

GND

2

TEMP1

1

GND

2

TEMP2

1

GATE+

2

GATE-

1

SMOKE

2

12V

1

GND

2

BTEMP

WATER

TEMP1

TEMP2

GATE

SMOKE

BTEMP

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2.5 UIM03D Panel Figure 2-10 UIM03D panel

(1) Communications ports

(2) Dry contact outputs

(3) Dry contact inputs

(4) Sensor ports

Ports Table 2-19 UIM03D port description Port Type

Silk Screen

Description

Sensor ports

TEM-HUM

Ambient T/H sensor

WATER

Water sensor, normally open (NO) Supports 12 V power supply.

TEMP1

Ambient temperature sensor 1

TEMP2

Ambient temperature sensor 2

GATE

Door status sensor, normally closed (NC)

SMOKE

Smoke sensor, normally open (NO)

BTEMP

Battery temperature sensor

Dry contact input ports

DIN1

Dry contact input 1

(Default setting: normally closed for DIN1, normally open for DIN2–6)

DIN2

Dry contact input 2

DIN3

Dry contact input 3

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Port Type

2 Component Description

Silk Screen

Description

DIN4

Dry contact input 4

DIN5

Dry contact input 5

DIN6

Dry contact input 6

Dry contact output ports

ALM1

The default setting (closed: alarm; open: normal) can be modified.

Dry contact output 1 (normally open by default)

ALM2

Dry contact output 2 (normally open by default)

ALM3

Dry contact output 3 (normally open by default)

ALM4

Reserved

ALM5

Reserved

ALM6

Reserved

ALM8

Dry contact output 8 (normally closed by default)

COM

4-wire RS485

ALM7

2-wire RS485

Communications ports

Communications Ports Table 2-20 Communications port description Communications Port

Communications Parameter

Function

COM

Baud rate:

Connects to a downstream device, such as a third-party power supply.

Default value: 9600 bit/s Options: 300 bit/s, 600 bit/s, 1200 bit/s, 2400 bit/s, 4800 bit/s, 9600 bit/s, 14400 bit/s, 19200 bit/s, 38400 bit/s, 56000 bit/s, 57600 bit/s, 115200 bit/s ALM7

Baud rate: Default value: 9600 bit/s Options: 9600 bit/s, 19200 bit/s, 115200 bit/s

Connects to a downstream device, such as a smart device.

NOTE The COM port is protected by a security mechanism.

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Figure 2-11 Pins in the COM port

Table 2-21 COM port pin definitions Pin

Signal

Description

1

RX+

Receives data over RS485.

2

RX-

3

12V

Supplies power.

4

TX+

Transmits data over RS485.

5

TX-

6, 8

PGND

Protective ground

7

Reserved

-

Table 2-22 ALM7 port pin definitions Pin

Signal

Description

+

RS485+

RS485 data +

-

RS485-

RS485 data –

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2 Component Description

Pin Definitions Figure 2-12 UIM03D pin numbers

Table 2-23 Pin definitions for UIM03D sensor ports Silk Screen

No.

Pin Definition

TEM-HUM

1

12V

2

ENV_TEMP

3

12V

4

ENV_HUM

1

12V

2

WATER

3

GND

4

-

1

TEMP1

2

GND

3

TEMP2

4

GND

1

GATE+

2

GATE-

3

12V

4

SMOKE

WATER

TEMP1

TEMP2

GATE

SMOKE

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Silk Screen

No.

Pin Definition

BTEMP

1

BTEMP

2

GND

2.6 UIM05B1 Figure 2-13 Mian Panel

(1) Dry contact ports and sensor ports

(2) COM communications port

(3) Battery temperature sensor port

(4) Door status sensor port

(5) Battery switch

(6) Cable hole

(7) Handle

The battery switch is used only when the mains supply is unavailable.

Ports Figure 2-14 Dry contacts and sensor ports

Table 2-24 Port description Port Type

Silk Screen

Description

Sensor port

TEMP

Temperature sensor

WATER

Water sensor

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Port Type

Dry contact input

Dry contact output

Communications port

2 Component Description

Silk Screen

Description

SMOKE

Smoke sensor

BTEMP

Battery temperature sensor

GATE

Door status sensor

DIN1 (Multiplexed with dry contact output 1)

Dry contact input 1

DIN2 (Multiplexed with dry contact output 2)

Dry contact input 2

DIN3 (Multiplexed with dry contact output 3)

Dry contact input 3

DIN4

Dry contact input 4

ALM1 (Multiplexed with dry contact input 1)

Dry contact output 1

ALM2 (Multiplexed with dry contact input 2)

Dry contact output 2

ALM3 (Multiplexed with dry contact input 3)

Dry contact output 3

ALM4

Dry contact output 4

ALM5

Dry contact output 5

ALM6

Dry contact output 6

ALM7

Dry contact output 7

ALM8

Dry contact output 8

COM

RS485

Communications Port Figure 2-15 Pins in the COM port

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Table 2-25 COM port pin definitions Pin

Signal

Description

1

RX+

Receives data over RS485

2

RX-

3

12V

Power supply

4

TX+

Transmits data over RS485

5

TX-

6

GND

Ground

7

Reserved



8

GND

Ground

Table 2-26 RS485/CAN port pin definitions Pin

Signal

Description

1

CANH

CAN high level signal

2

CANL

CAN low level signal

3

RS485+

RS485 data +

4

RS485-

RS485 data -

Table 2-27 CAN port pin definitions Pin

Signal

Description

1

CANH

CAN high level signal

2

CANL

CAN low level signal

3

NA

-

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Sensor Ports Figure 2-16 Pins in sensor ports

Table 2-28 UIM05B1 pin definitions Sensor Port

No.

Pin Definition

TEMP

1

TEMP1+

2

TEMP1-

1

WATER

2

GND

1

12V

2

SMOKE

1

BTEMP1+

2

BTEMP1-

1

GATE+

2

GATE-

WATER

SMOKE

BTEMP

GATE

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2.7 NIM02D Panel Figure 2-17 Panel

(1) FE cascade port

(2) Signal Input ports/12 V power port

(3) FE ports

Ports Table 2-29 Port Description Port

Function

Communications Parameter

FE_CASCADE

Connects to the FE port on the SMU.

10/100M autonegotiation

FE1/2

Connects to an NMS or a smart device such as an IP camera.

CH1/2/3/4/5/6

Signal Input ports.

-

12 V

12 V power output.

-

Remarks: 

The FE ports are protected by a security mechanism.



CH1/2/3/4 supports AI (4–20 mA), AI (0–10 V DC), or DI detection. The function can be used by hardware jumper or software parameter configuration.



CH5/6 supports only AI (4–20 mA) detection by default.

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Figure 2-18 Pins in an FE communications port

Table 2-30 Pin definitions for FE communications ports Pin

Signal

Description

1

TX+

Transmits data over FE.

2

TX-

3

RX+

6

RX-

4, 5, 7 and 8

NA

Receives data over FE.

-

2.8 NIM01C3 Panel Figure 2-19 NIM01C3 panel

(1) SIM card slots (2 PCS)

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(2) 4G indicator

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(3) Alarm indicator

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(4) Run indicator

(5) ANT communications port

(6) COM1 port

(7) COM2 port

(8) COM3/CAN port

(9) COM4 port

(10) Handle

Indicators Table 2-31 Indicator description Indicator

Color

Status

Description

4G indicator

Green

Steady on

The dial-up connection is in the data service state.

Blinking at a period of 2s (on for 0.1s and then off for 1.9s)

The network has been registered.

Blinking at a period of 2s (on for 0.1s, off for 0.1s, on for 0.1s and then off for 1.7s)

A network is in search, or no network is connected.

Off

No alarm is generated.

Steady on

An alarm is generated.

Off

The NIM01C3 is not running because it is faulty or has no DC input.

Blinking at a period of 2s (on for 2s and then off for 1s)

The NIM01C3 is running and communicating with the host properly.

Blinking at a period of 0.25s (on for 0.125s and then off for 0.125s)

The NIM01C3 is running properly, but fails to communicate with the host.

Alarm indicator

Run indicator

Red

Green

Communications Ports Table 2-32 Communications port description Communications Port

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Communications Parameter

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Description

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Communications Port

Communications Parameter

Description

COM1 port

Baud rate: 1200 bit/s, 2400 bit/s, 4800 bit/s, 9600 bit/s, 14400 bit/s, 19200 bit/s, 115200 bit/s

Supports master/slave protocols and Modbus protocols. Supplies 12 V power.

COM2 port

Baud rate: 1200 bit/s, 2400 bit/s, 4800 bit/s, 9600 bit/s, 14400 bit/s, 19200 bit/s, 115200 bit/s

Supports master/slave protocols and Modbus protocols. Supplies 12 V power.

COM3/CAN port

Baud rate: 1200 bit/s, 2400 bit/s, 4800 bit/s, 9600 bit/s, 14400 bit/s, 19200 bit/s, 115200 bit/s

COM3: Supports master/slave protocols and Modbus protocols. CAN: Supports CAN protocol.

COM4 port

Baud rate: 1200 bit/s, 2400 bit/s, 4800 bit/s, 9600 bit/s, 14400 bit/s, 19200 bit/s, 115200 bit/s

Supports Modbus protocols.

Figure 2-20 Pins in the COM1, COM2, and COM3 ports

Table 2-33 Description for the pins in the COM1 and COM2 ports Pin

Signal

Description

1

RS485+

RS485 data +

2

RS485-

RS485 data -

3

12 V

Supply power

4

RS485+

RS485 data +

5

RS485-

RS485 data -

6

NA

-

7

NA

-

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Pin

Signal

Description

8

GND

Ground

Table 2-34 Description for the COM3/CAN port pins Pin

Signal

Description

1

RX+

Receives data over RS485.

2

RX-

3

NA

-

4

TX+

Transmits data over RS485.

5

TX-

6

GND

Grounded.

7

CANH

CAN high level signal.

8

CANL

CAN low level signal.

Table 2-35 Description for the COM4 port pins Silk Screen

Signal

Description

R+

RS485+

RS485 data +

R-

RS485-

RS485 data -

2.9 CIM02C Panel Figure 2-21 CIM02C panel

(1) COM1 port

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(2) COM2 port

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(3) COM3/COM4 port

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(4) 12 V power port

2 Component Description

(5) COM5 port

(6) Handle

Communications Ports Table 2-36 Communications port description Communications Port

Description

Communications Parameter

COM1 port

Supports RS485.

Baud rate

12 V power supply, maximum output 1.5 A.

Default value: 9600 bit/s

Connects to a smart device. COM2 port

Supports RS485.

Options: 1200 bit/s, 2400 bit/s, 4800 bit/s, 9600 bit/s, 14400 bit/s, 19200 bit/s, 115200 bit/s

12 V power supply, maximum output 1.5 A. Connects to a smart device. COM3/COM4 port

COM3 supports RS485. COM4 supports RS232 and CAN. RS232 is used by default, which can be changed to CAN by using a jumper. Connects to a third-party power supply.

COM5 port

Supports RS232 and RS485. RS485 is used by default, which can be changed to RS232 by using a jumper. Connects to an air conditioner.

Figure 2-22 Pins in the COM1, COM2, or COM3/COM4 port

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Table 2-37 Pin definitions for the COM1 and COM2 ports Pin

Single

Description

1

RS485+

RS485 data +

2

RS485-

RS485 data -

3

12 V

Power supply

4

RS485+

RS485 data +

5

RS485-

RS485 data -

6

NA



7

NA



8

GND

Ground

Table 2-38 Pin definitions for the COM3/4 port Pin

Single

Description

1

RS485_RX+

Receives data over RS485.

2

RS485_RX-

3

RS232_RXD

Receives data over RS232.

4

RS485_TX+

Transmits data over RS485.

5

RS485_TX-

6

GND

Ground.

7

CANH/RS232_TXD

CAN high level signal/Transmits data over RS232.

8

CANL

CAN low level signal.

Table 2-39 Pin definitions for the COM5 port Silk Screen

Signal

Description

R+/TX

RS485+/RS232_TXD

RS485 data + or transmits data over RS232.

R-/RX

RS485-/RS232_RXD

RS485 data - or receives data over RS232.

GND

GND

Ground.

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2.10 GIM01C Panel Figure 2-23 GIM01C panel

(1) Run indicator

(2) DG 1 control ports

(3) DG 2 control ports

(4) DG 1 reset ports

(5) DG 2 reset ports

(6) Fuel level 1 detection ports

(7) Fuel level 2 detection ports

(8) COM communications ports

(9) CAN communications port

(10) Alarm indicator

Indicators Table 2-40 Indicator description Name

Color

Status

Remarks

RUN indicator

Green

Off

The module is faulty or has no DC input.

Blinking slowly (0.5 Hz)

The module is running and communicating with the host properly.

Blinking fast (4 Hz)

The module is running properly but does not communicate with the host properly.

ALM indicator

Red

Reserve

Ports Table 2-41 Port description Port Type

Silk Screen

DG control port

DG1_CTL

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Description

Remarks

NC

DO normally closed port

M

Common port

Controls DG startup and

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Port Type

Silk Screen

DG2_CTL

DG reset port

RST1

RST2

Fuel level detection port

AI1

AI2

Communications port

COM

CAN

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Description

Remarks

NO

DO normally open port

shutdown.

NC

DO normally closed port

M

Common port

NO

DO normally open port

M

Common port

NO

DO normally open port

M

Common port

NO

DO normally open port

+

+12 V power supply

-

Analog signal

+

+12 V power supply

-

Analog signal

R+

RS485 data +

R-

RS485 data –

+

CAN data +

-

CAN data –

Copyright © Huawei Technologies Co., Ltd.

The DG resets if the port is closed.

Detect the fuel level.

Used for RS485 communication. Used for CAN communication.

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3

User Interfaces

3.1 LCD 3.1.1 Setup Wizard After the SMU is powered on for the first time, the Setup Wizard page is displayed, as shown in the following figure.

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Figure 3-1 Setup wizard

3.1.2 Modifying the display language The monitoring unit supports English, Chinese, French, Spanish, Portuguese, Russian, Italian, German, Turkish, and Japanese. When the monitoring unit is running properly, choose the following menus to select a language. Table 3-1 Modifying the display language Main Menu

Second-Level Menu

Third-Level Menu

Setting

Parameters Settings

Local Parameters

Language

Select a desired language.

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3.1.3 Restart Button To restart the monitoring unit, hold down

and

for 10s.

3.1.4 Password Two-level password management supported by the LCD, two user levels are available. Table 3-2 Two-level password management Level

Operation Permission

Password

engineer

All permissions except for changing the administrator password and resetting the web password.

000001

admin

Has all operation permissions.

012589 NOTE The admin password can only be used by the administrator. It must not be provided for third-party maintenance personnel.

3.1.5 Standby Screen The following figure shows the monitoring unit standby screen, which displays basic power system information, including the DC output voltage, total load current, and total battery current.

The parameter values in the figures are for reference only.

Figure 3-2 Standby screen

The standby screen is displayed if no button is pressed within 1 minute on any screen. On the standby screen, you can press , , and to enter the version information screen, basic information screen, and main menu screen respectively, as shown in the following figure.

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Figure 3-3 Standby screen operations

Main menu include active alarm, running information, setting wizard, parameters settings, running control, site maintain and user management.

3.2 WebUI 3.2.1 Connecting a Communications Cable Procedure Step 1 Preparing the Operating Environment. Step 2 Connect the FE port on the SMU by using a network cable. Figure 3-4 Connecting a communications cable

----End

3.2.2 Setting Parameters Procedure Step 1 Apply to the site or equipment room network administrator for a fixed IP address. Step 2 Set the IP type, IP address, subnet mask, and gateway address on the LCD.

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Table 3-3 IP parameters Main Menu

Second-Level Menu

Third-Level Menu

Default Value

Setting Value

Setting Wizard

Network Parameters

IP Type

IPv4

Set as required.

IP Address

192.168.0.10

Set this parameter according to the address provided by the network administrator.

Subnet Mask

255.255.255.0

Set this parameter according to the subnet mask provided by the network administrator.

Default Gateway

192.168.0.1

Set this parameter according to the gateway address provided by the network administrator.

----End

3.2.3 Logging In to the WebUI Procedure Step 1 Set the PC IP address in the same network segment as the SMU IP address. For example, if the SMU has an IP address of 192.168.0.10, a subnet mask of 255.255.255.0, and a default gateway of 192.168.0.1, set the IP address to 192.168.0.11, subnet mask to 255.255.255.0, and default gateway to 192.168.0.1 on the PC. Step 2 Enter https://monitoring unit local IP address (for example, https://192.168.0.10) in the address box of the browser, and then press Enter to access the WebUI login page. Figure 3-5 WebUI login page

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The preset user names include admin, engineer, and operator, and the preset password is Changeme. The user names are intended for administrators, engineers, and operators respectively. Change the preset password when you first log in to ensure system security. The method about how to change the password, see 5.2.5 Changing a User Password.

----End

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4

NMS Management

4.1 U2000-SPM Management 4.1.1 Connecting a Communications Cable Procedure Step 1 Connect one end of a network cable to the RS485/RS232 port on the SMU. Step 2 Connect the other end to the MON0 or MON1 port on the BBU. Figure 4-1 Connecting a communications cable

(1) RS485/RS232 port

(2) MON1 port

----End

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4.1.2 Setting Parameters Step 1 On the LCD, set the port mode, communications protocol type, baud rate, and communications address on the LCD, as shown in the following table. Table 4-1 Communications parameters Main Menu

Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Fifth-Level Menu

Setting Value

Parameters Settings

Comm. Parameters

Serial Port

Northbound

Port Mode

Manual

Protocol Type

M/S Protocol

Baud Rate

-

9600

Comm. Address

-

3

M/S Protocol

----End

4.2 NetEco Management 4.2.1 IP Networking Step 1 Connect a network cable to the FE port on the SMU. Figure 4-2 Connecting a communications cable

(1) FE Port

Step 2 Apply to the site or equipment room network administrator for a fixed IP address. Step 3 Set the IP type, IP address, subnet mask, and gateway address on the LCD. Table 4-2 IP parameters Main Menu

Second-Level Menu

Third-Level Menu

Default Value

Setting

Setting

Network

IP Type

IPv4

Set as required.

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Main Menu

Second-Level Menu

Third-Level Menu

Default Value

Setting

Wizard

Parameters

IP Address

192.168.0.10

Set this parameter based on the address assigned by the network administrator.

Subnet Mask

255.255.255.0

Set this parameter based on the address assigned by the network administrator.

Default Gateway

192.168.0.1

Set this parameter based on the address assigned by the network administrator.

Step 4 Set IP addresses and port numbers for the active and standby NetEco servers and backup NetEco servers on the LCD. Table 4-3 NetEco parameters Main Menu

Second-Level Menu

Third-Leve l Menu

Fourth-Level Menu

Default Value

Setting

Parameters Settings

Comm. Parameters

Network Parameters

NetEco Primary IP

192.168.0.10

Set this parameter to the IP address of the active NetEco server.

NetEco Backup IP

192.168.0.10

Set this parameter to the IP address of the standby NetEco server.

NetEco Port Number

31220

31220 NOTE Please contact Huawei technical support if you need change the port number.

----End

4.2.2 Wireless Networking Installing a Wireless Antenna Step 1 Insert the SIM card into the SIM card slot in the communications expansion board. The SIM card inserted into the communications expansion module (NIM01C3) should support GSM, WCDMA, TD-SCDMA, TDD, and FDD standards, and have the SMS and data service functions enabled. Step 2 Connect the GPRS antenna to the ANT port on the NIM01C3.

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Figure 4-3 Connection between a GPRS antenna and an NIM01C3

----End

Setting Communications Parameters Step 1 Check whether the default wireless communications parameters on the LCD are consistent with the communication configurations of the carrier network that the SIM card belongs to. If they are inconsistent, modify the parameters according to the actual configurations of the carrier network. Table 4-4 Checking wireless communication parameters Main Menu

Second-Leve l Menu

Third-Level Menu

Fourth-Level Menu

Default Value

Value Range

Parameters Settings

Comm. Parameters

Mobile Data

Carrier Operator

Automatic

Automatic, Others

SIMn Acc Point Name

-

A maximum of 28 characters, including lowercase English letters (a-z), uppercase English letters (A-Z), digits (0-9), and special characters (@_#*-.).

NOTE This parameter is displayed only when Carrier Operator is set to Others.

SIMn Access Point No

-

NOTE This parameter is displayed only when Carrier Operator is set to Others.

SIMn User Name

-

NOTE This parameter is displayed only when Carrier Operator is set to

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Main Menu

Second-Leve l Menu

Third-Level Menu

4 NMS Management

Fourth-Level Menu

Default Value

Value Range

-

A maximum of 27 characters, including lowercase English letters (a-z), uppercase English letters (A-Z), digits (0-9), and special characters (@_#-.).

Others.

SIMn User Password NOTE This parameter is displayed only when Carrier Operator is set to Others.

It is recommended that the password contain at least two types of characters and the length exceed six characters.

Step 2 Set IP addresses and port numbers for the active and standby NetEco servers and backup NetEco servers on the LCD. Table 4-5 Setting NetEco parameters Main Menu

Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Default Value

Setting

Parameters Settings

Comm. Parameters

Network Parameters

NetEco Primary IP

192.168.0.10

Set this parameter to the IP address of the active NetEco server.

NetEco Backup IP

192.168.0.10

Set this parameter to the IP address of the standby NetEco server.

NetEco Port Number

31220

31220

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NOTE Please contact Huawei technical support if you need change the port number.

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----End

Verifying Network Connection Status After the SIM card and wireless antenna are installed, the SIM card automatically accesses the wireless network in dial-up mode. You can view the network connection status on the LCD. Table 4-6 Verifying the network connection status Main Menu

Second-Level Menu

Third-Level Menu

Remarks

Running Information

Mobile Data Info

Connection Status

Connected indicates successful dial-up and normal network connection.

The following table shows general requirements of GPRS Network performance. If the network performance is worse than the requirements, communication interruption may happen.

Table 4-7 GPRS main performance index Index

Description

Reference

Received signal strength indicator (RSSI)

If the probability of received signal code power (RSCP) greater than –89 dBm is less than 95%, the cell coverage of wireless signals is poor.

P (RSCP > –89 dBm) 95%

Packet Data Protocol (PDP) activation success rate

PDP activation success rate = Successful number of PDP activation/Total number of PDP activation

95%

Attach attachment success rate

Attach attachment success rate = Successful number of PDP attachment/Total number of PDP attachment

95%

Handover success rate

Handover success rate = Successful number of GPRS handover/Total number of GPRS handover

98%

4.2.3 BBU In-band Networking Step 1 Connect one end of a network cable to the RS485/RS232 port on the SMU. Step 2 Connect the other end to the MON0 or MON1 port on the BBU.

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Figure 4-4 Connecting a communications cable

(1) RS485/RS232 Port

(2) MON1 Port

Step 3 Set the port mode, communications protocol type, baud rate, and communications address on the LCD. Table 4-8 Setting communications parameters Main Menu

Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Fifth-Level Menu

Setting

Parameters Settings

Comm. Parameters

Serial Port

Northbound

Port Mode

Manual

Protocol Type

M/S Protocol

Baud Rate

-

9600

Comm. Address

-

3

M/S Protocol

----End

4.2.4 Logging In to the NetEco Procedure Step 1 Enter https://NetEco IP address: port number for NetEco login (for example, https://10.10.10.1:31943) in the address box of the browser and press Enter. The NetEco login page is displayed.

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Figure 4-5 NetEco login page

Step 2 Enter the correct user name and password and click Log In.

To obtain the NetEco user name and password, contact the site or equipment room network administrator. ----End

4.3 NMS Management over SNMP 4.3.1 Site Configuration 4.3.1.1 Connecting a Communications Cable Procedure Step 1 Connect the FE port on the SMU by using a network cable, as shown in Figure 4-6. Figure 4-6 Connecting a communications cable

(1) FE port

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----End

4.3.1.2 Setting Parameters Procedure Step 1 Apply to the site or equipment room network administrator for a fixed IP address. Step 2 Set the

IP type, IP address, subnet mask, and gateway on the LCD, as shown in Table 4-9

Table 4-9 IP parameters Main Menu

Second-Level Menu

Third-Level Menu

Default Value

Setting Value

Setting Wizard

Network Parameters

IP Type

IPv4

Set as required.

IP Address

192.168.0.10

Set this parameter according to the address provided by the network administrator.

Subnet Mask

255.255.255.0

Set this parameter according to the subnet mask provided by the network administrator.

Default Gateway

192.168.0.1

Set this parameter according to the gateway address provided by the network administrator.

----End

4.3.2 Setting SNMP Parameters Prerequisites You can set SNMP parameters remotely or locally on the WebUI.

Before setting SNMP parameters, obtain the information listed in Table 4-10 from the SNMP NMS.

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Table 4-10 Information obtained from the NMS Item

Description

SNMP version

SNMP version and port number used for communication between the SMU and NMS. The SNMP version can be SNMPv1, SNMPv2c, SNMPv3.

SNMP Port Number

Read Community Name

If you use SNMPv1 or SNMPv2c, enter the read and write community names that comply with the NMS. Otherwise, the SMU will not connect to the NMS.

Write Community Name

The read community name must be different from the write community name. User Name

To enhance the security, you need a user name and password for authentication if you use SNMPv3. After the authentication succeeds, the SMU can communicate with the NMS.

MD5/SHA Password DES/AES Password Trap Target Address

IP address and port number used for reporting alarm trap packets.

Trap Port Trap Community

If you use SNMPv1 or SNMPv2c, community name used for reporting alarm trap packets.

Procedure Step 1 Log in to the WebUI.

The preset user name is admin, and the preset password is Changeme.

Step 2 Access the System Settings page and set SNMP.

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Figure 4-7 SNMP Page



There are two or more NMSs and the SNMP versions have both SNMPv1 or SNMPv2c and SNMPv3: Set SNMP Version to ALL in SNMP, and set SNMP Port Number, Read Community Name, and Write Community Name. Then click Add in SNMPv3, and set User Name, MD5/SHA Password, and DES/AES Password. Then click Confirm. Figure 4-8 Choosing SNMP Version to ALL



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Figure 4-9 Choosing SNMP Version to SNMPv1 or SNMPv2c



SNMPv3: Set SNMP Version to SNMPv3 in SNMP, click Add in SNMPv3, and set User Name, MD5/SHA Password, and DES/AES Password. Then click Confirm. Figure 4-10 SNMP Version to SNMPv3

Step 3 In SNMP Trap, click Add. 

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Figure 4-11 Adding Trap address



If the SNMP Version is SNMPv3, set Trap Target Address and Trap Port and SNMPv3 User Name. Figure 4-12 Adding Trap address

SNMP Version in this place can be different from the version in Step 2.

Step 4 In Mib files, click Export to export the Mib file and then import it into the NMS.

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Figure 4-13 Exporting Mib files

If there is only one NMS, perform 4.3.2 Setting SNMP Parameters once only.

----End

4.3.3 NMS Commissioning You can query the power system operating status, active alarms, and the names of user-defined dry contact inputs, and configure dry contact outputs on the network management system (NMS) that is connected over the Simple Network Management Protocol (SNMP).

4.4 NMS Management over YDN1363 Protocol 4.4.1 Connecting a Communications Cable Procedure Step 1 Connect one end of a network cable to the RS485/RS232 port on the SMU. Step 2 Connect the other end to the corresponding port on the power and environment monitoring device, as shown in Figure 4-14.

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Figure 4-14 Connecting a communications cable

(1) Power and environment network management system (NMS)

(2) Power and environment monitoring device

(3) RS485/RS232 port on the SMU

----End

4.4.2 Setting Parameters Step 1 On the LCD, set the port mode, communications protocol type, baud rate, and communications address on the LCD, as shown in Table 4-11. Table 4-11 Communications parameters Main Menu

Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Fifth-Level Menu

Default Value

Parameters Settings

Comm. Parameters

Serial Port

Northbound

Port Mode

Manual

Protocol Type

YDN1363 Protocol

Baud Rate

-

9600

Comm. Address

-

1

YDN1363 Protocol

----End

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4.5 NMS Management over Modbus 4.5.1 Connecting a Communications Cable Step 1 Connect one end of a network cable to the RS485/RS232 port on the SMU. Step 2 Connect the other end to the corresponding port on the third-party device, as shown in Figure 4-15. Figure 4-15 Connecting a communications cable

(1) Network management device

(2) Third-party device

(3) RS485/RS232 port on the SMU

----End

4.5.2 Setting Parameters Step 1 On the LCD, set the port mode, communications protocol type, baud rate, and communications address on the LCD, as shown in Table 4-12. Table 4-12 Communications parameters Main Menu

Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Fifth-Level Menu

Default Value

Parameters Settings

Comm. Parameters

Serial Port

Northbound

Port Mode

Manual

Protocol Type

Modbus Protocol

Baud Rate

-

9600

Comm. Address

-

33

Modbus Protocol

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----End

4.6 NMS Management over TCP-Modbus 4.6.1 Connecting a Communications Cable Procedure Step 1 Connect the FE port on the SMU by using a network cable, as shown in Figure 4-16. Figure 4-16 Connecting a communications cable

(1) FE port

----End

4.6.2 Setting Parameters Procedure Step 1 Log in to the WebUI.

The preset user name is admin, and the preset password is Changeme.

Step 2 Choose System Settings > TCP-Modbus Config and set parameters. For details, see Table 4-13. Table 4-13 Communications parameters Parameter

Value

Setting Method

TCP-Modbus link Mode

Sever, Client, Sever+Client



Server: The SMU works as the server and can connect to one client for communication.



Client: The SMU works as a client and can connect to the remote server for communication.



Server+Client: The SMU works as the server and can connect to one client for communication. At the same time, the SMU works as a client and can connect to the remote

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Parameter

Value

4 NMS Management

Setting Method server for communication.

TCP-Modbus SSL server enable

Enable, Disable

TCP-Modbus SSL client enable

Enable, Disable

TCP-Modbus client IP address

-

The default value is Enable. NOTE This parameter is displayed only when TCP-Modbus link Mode is set to Server and Server+Client.

The default value is Enable. NOTE This parameter is displayed only when TCP-Modbus link Mode is set to Client and Server+Client.

The default value is 192.168.0.10. Set the NMS IP address based on the actual situation. NOTE This parameter is displayed only when TCP-Modbus link Mode is set to Client and Server+Client.

TCP-Modbus client IP port

-

The default value is 16100. It is recommended that you not change the value. If necessary, set this parameter based on the actual situation. NOTE This parameter is displayed only when TCP-Modbus link Mode is set to Client and Server+Client.

Step 3 Upload CA certificate file, local certificate file and key file. ----End

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5

Common Tasks

5.1 Common Installation Tasks 5.1.1 Using a USB Flash Drive for Site Deployment Prerequisites 

The USB flash drive stores the upgrade and configuration files required for site deployment.



The upgrade and configuration files must be stored in the root directory of the USB flash drive. Otherwise, the SMU cannot read the configuration file.



The configuration file name starts with Config and ends with .tar.gz or .zip.

The file name should have less than 80 characters, cannot start with fault, and cannot contain single or double quotation marks, spaces, or the following special characters:< \ > | ; $ & ` ( ) % 

The USB flash drive and file have been scanned to ensure that they are not infected with viruses.

Context You can copy site configuration parameters from the LCD or WebUI to a USB flash drive to rapidly set up other sites.



Export configuration parameters from the LCD to a USB flash drive: On the LCD, choose Site Maintain > Export File to USB to export the configurations of the current operating system into a configuration file and save the file in a USB flash drive.



For details about how to export configuration parameters from the WebUI to a USB flash drive, see 5.2.1 Backing Up the Current Settings.

Procedure Step 1 Insert the USB flash drive into the SMU USB port. The LCD displays the Site Maintain screen.

When visiting Site Maintain on the LCD, enter the preset password 000001.

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Step 2 Choose Site Maintain > U Disk Upgrade/Cfg. Step 3 Select the upgrade or configuration file stored in the root directory of the USB flash drive, and tap

. Back up first. Go on? is displayed.

Step 4 Select YES and tap , Package Classifying is displayed and Config Processing is displayed, indicating that upgrade or data configuration is in progress.

The configuration or upgrade process will take about 5 minutes.

Step 5 After the upgrade or configuration is complete, Config Successful Rebooting in 15s. The SMU will restart 15 seconds later. Step 6 After the restart is complete, remove the USB flash drive. ----End

5.1.2 Setting the Time Zone and Time Set the date and time based on the local time and time zone. Table 5-1 Setting the time zone and time Main Menu

Second-Level Menu

Third-Level Menu

Setting

Setting Wizard

Date and Time

Time Zone

Set to the local time zone.

Date and Time

Set to the local date and time.

5.1.3 Setting Basic Battery Parameters Context Basic battery parameters are fundamental for the monitoring unit to manage batteries and should be set based on the number and capacity of battery strings connected. The monitoring menus are related to the type of connected batteries and the number of battery strings.

Incorrectly setting basic battery parameters affects the battery charge and discharge management and reduces the battery lifespan.

Procedure Step 1 Set the battery type.

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Table 5-2 Setting the battery type Main Menu

Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Setting

Parameters Settings

Setup Parameter

Basic Parameters

Battery Vendor

Set based on site requirements.

Battery Model

NOTE If lithium batteries and lead-acid batteries are used together, set Battery Vendor and Battery Model based on the lead-acid battery parameters.

Step 2 Set lead-acid battery parameters. Table 5-3 Setting lead-acid battery parameters Main Menu

Second-Level Menu

Third-Level Menu

Setting

Setting Wizard

Batt Parameters

Battery N Connected

Yes/No NOTE

Set the corresponding Battery N Connected to Yes and the other parameters to No based on the circuit breaker or fuse to which lead-acid batteries are connected. Single-String Cap.

Rated capacity of the batteries in a battery string. NOTE The batteries controlled by one circuit breaker or fuse are called a battery string.

For example: 

If battery routes 1 and 2 are respectively connected to a battery string (each battery string consists of four 12 V, 150 Ah batteries in series), set Battery 1 Connected and Battery 2 Connected to Yes and others to No, and set Single-String Cap. to 150 Ah.



If battery route 1 is connected to two battery strings in parallel (each battery string consists of four 12 V, 150 Ah batteries in series), set Battery 1 Connected to Yes and others to No, and set Single-String Cap. to 300 Ah.

Step 3 Set lithium battery parameters. Table 5-4 Setting lithium battery parameters Main Menu

Second-Level Menu

Third-Level Menu

Third-Level Menu

Setting

Parameter s Settings

Li Battery

Basic Parameters

Battery 1 Connected

Yes/No

Battery 2 Connected

NOTE Set the corresponding Battery

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Second-Level Menu

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Third-Level Menu

Third-Level Menu

Setting N Connected to Yes and the other parameters to No based on the circuit breaker or fuse to which lithium batteries are connected.

Step 4 Set small-capacity lithium battery parameters. Table 5-5 Setting small-capacity lithium battery parameters Main Menu

Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Setting

Parameters Settings

Low Cap Li-ion Batt

Basic Parameters

Battery 1 Connected

Yes/No

Battery 2 Connected

NOTE Set the corresponding Battery N Connected to Yes and the other parameters to No based on the circuit breaker or fuse to which small-capacity lithium batteries are connected.

Rated Capacity

Rated capacity of the batteries in a battery string. NOTE The batteries controlled by one circuit breaker or fuse are called a battery string.

For example, if lithium batteries are connected to battery circuit breaker 1 and lead-acid batteries are connected to battery circuit breaker 2, set lead-acid battery parameters according to 5.1.3 Setting Basic Battery Parameters (set Battery 1 Connected to No and Battery 2 Connected to Yes) and set lithium battery parameters according to 5.1.3 Setting Basic Battery Parameters (set Battery 1 Connected to Yes and Battery 2 Connected to No).

----End

5.1.4 Setting the Alarm Enable Option, Alarm Severity, and Associated Relays 

You can enable or disable each alarm based on site requirements. If an alarm is enabled, the monitoring unit generates the alarm when the alarm condition is met. If an alarm is disabled, the monitoring unit does not generate the alarm.



You can set the severity of an alarm to critical, major, minor, or warning.



You can associate an alarm with a specific dry contact output relay.

The following describes how to set alarm parameters for an AC Loop Fault.

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Table 5-6 Setting the alarm enable option, alarm severity, and associated relays Main Menu

Second-Lev el Menu

Third-Level Menu

Fourth-Lev el Menu

Fifth-Level Menu

Sixth-Level Menu

Setting

Parameters Settings

Alarm Parameters

Alarm Config

Site Unit

AC Loop Fault

Alarm Enable

Enable

Alarm Severity

Major

Output Relay

ALM1 No

Associated camera

Camera 1 No

5.1.5 Setting Alarm Parameters for Dry Contacts Context 

You can set associations between dry contact output status and alarm status.



You can clear the associations between all alarms and the selected dry contact inputs or outputs in one click.



You can set associations between dry contact input status and alarm status. Use DIN1 as an example. If you set DIN1 Alarm Condition to Close, the SMU generates a DIN1 Alarm when the DIN1 is closed.

Procedure Step 1 Set alarm actions for dry contact outputs. Use ALM1 as an example. Table 5-7 Setting alarm actions for dry contact outputs Main Menu

Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Setting

Parameters Settings

Alarm Parameters

DO Dry Contact Para.

ALM1 Alarm Action

Close

Step 2 Clear associations between alarms and dry contact outputs. Use ALM1 as an example. Table 5-8 Clearing associations between alarms and dry contact outputs Main Menu

Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Setting

Parameters Settings

Alarm Parameters

Clear ALM Asso.

Clear ALM1 Asso.

Yes

Step 3 Set alarm conditions for dry contact inputs. Use DIN1 as an example.

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Table 5-9 Setting alarm conditions for dry contact inputs Main Menu

Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Setting

Parameters Settings

Alarm Parameters

DI Dry Contact Para.

DIN1 Alm. Cond.

Close

Step 4 Clear associations between alarms and dry contact inputs. Use DIN1 as an example. Table 5-10 Clearing associations between alarms and dry contact inputs Main Menu

Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Setting

Parameters Settings

Alarm Parameters

Clear DI Asso.

Clear DIN1 Asso.

Yes

----End

5.1.6 Setting Rectifier Addresses Context You can set rectifier addresses only on the LCD and only to the power system that does not have a hardware address. Figure 5-1 Rectifier addresses (twenty 100 A rectifiers are used in the example)

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Parameters Table 5-11 Rectifier address parameter description Parameter

Description

Default Value

Value Range

Rect. Address Settings

Select Yes when you need to manually set rectifier addresses.

No



Set each rectifier address manually.



N. Rectifier Address



Yes No

1~60

LCD Operations Step 1 Set Rect. Address Settings to Yes. Path: Main Menu > Setting Wizard > Rect. Address Settings Step 2 Press

to choose 1. Rectifier Address.

Step 3 Observe the indicators on rectifiers. If the power indicator (green) on a rectifier blinks at 0.5 Hz, the rectifier is selected. Set the rectifier address to the value shown in Figure 5-1 based on the rectifier position. Step 4 Set the addresses for all rectifiers in the cabinet one by one. Step 5 Press

to choose Save Settings. Press

to save the settings.

----End

5.1.7 Setting Basic DG Parameters Procedure Step 1 Set Genset and fuel tank number. Table 5-12 Setting Genset and fuel tank number Main Menu

Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Default Value

Value Range

Parameters Settings

Setup Parameters

Basic Parameters

Genset Qty

0

0-2

Tank Qty

1

0-4

Step 2 Set basic Genset parameters.

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Table 5-13 Setting basic Genset parameters Main Menu

Second-Le vel Menu

Third-Level Menu

Fourth-Level Menu

Default Value

Value Range

Parameters Settings

Genset

Genset n

Rated Power

12.5 kW

1 to 5000 NOTE Rated output power of a single DG.

Other Device Config

Fuel Tank n

Run Hour for Maint

9999h

0 to 10000

Days for Maint

500h

0 to 30000

Tank Type

Cuboid

Horizontal Cylinder, Vertical Cylinder, Irregular, Cuboid

Tank Length

1.50 m

0.50 to 20.00 NOTE This parameter is displayed only when Tank Type is set to Horizontal Cylinder.

Cyl Tank Diameter

1.13 m

0.00 to 4.00 NOTE This parameter is displayed only when Tank Type is set to Vertical Cylinder or Horizontal Cylinder.

Cuboid Tank Length

1.00 m

Cuboid Tank Width

1.00 m

Tank Height

1.50 m

0.00 to 10.00 NOTE This parameter is displayed only when Tank Type is set to Cuboid.

0.00 to 10.00 NOTE This parameter is displayed only when Tank Type is set to Cuboid.

0.0 to 10.0 NOTE This parameter is displayed only when Tank Type is set to Vertical Cylinder or Cuboid.

Rated Capacity

1500.00 L

0.00 to 6000.00 NOTE

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Third-Level Menu

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Fourth-Level Menu

Default Value

Value Range This parameter is displayed only when Tank Type is set to Irregular.

Under Fuel Level

15.0%

0.0 to 50.0

Refuel Level

20.0%

0.0 to 50.0

Abnor Change Thres

3.0 cm

1.0 to 1000.0

Abnor Change Dur

10.0 Min

1.0 to 60.0

Level Filter Time

30 Min

1 to 1440

Calibration Num

10

1 to 100 NOTE This parameter is displayed only when Tank Type is set to Irregular.

Height H n

0.00 cm

0.00 to 200.00

NOTE Set this parameter to H0. Set other parameters based on site requirements.

NOTE This parameter is displayed only when Tank Type is set to Irregular.

0.00 L

0.00 to 6000.00

NOTE Set this parameter to H0. Set other parameters based on site requirements.

NOTE This parameter is displayed only when Tank Type is set to Irregular.

Level Filter Thres

3.00 cm

0.00 to 10.00

Refuel Calc Enb

Yes

Yes, No

Volum V n

----End

5.1.8 Starting a Genset Self-Check Context 

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If the mains power is used, ensure that the mains AC input circuit breaker on the ATS is OFF.

Procedure Step 1 Check and confirm the control mode is Automatic. If it is Manual, set control mode to Automatic in diesel generator. Table 5-14 Checking the DG control mode Main Menu

Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Setting

Running Control

Genset

Genset Group

Control Mode

Automatic

Step 2 Start a Genset self-check. Table 5-15 Starting a Genset self-check Main Menu

Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Setting

Running Control

Genset

Genset Self Check

Confirm Self Check

Yes

A maximum of two DGs can be connected. The auto check process is as follows: 1. About 2 minutes after starting DG 1, the monitoring unit checks the DG running status to determine whether the DG has started. 2. About 2 minutes after shutting down DG 1, the monitoring unit checks the DG running status to determine whether the DG has shut down. 3. About 2 minutes after starting DG 2, the monitoring unit checks the DG running status to determine whether the DG has started. 4. About 2 minutes after shutting down DG 2, the monitoring unit checks the DG running status to determine whether the DG has shut down. After the auto check is complete, the SMU displays the results on the screen: 

Control DG Number (0/1/2)



DG 1 Start Result (Success/Fail)



DG 1 Stop Result (Success/Fail)



DG 2 Start Result (Success/Fail)



DG 2 Stop Result (Success/Fail)

A single-DG self-check takes about 4 minutes, and a dual-DG self-check takes more than 8 minutes.

Step 3 Verify that the self-check result is consistent with the actual number of DGs and the DGs work properly. If the DG self-check fails, refer to the DG manual for troubleshooting and DG cable connection checking. ----End

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5.1.9 Setting WiFi Parameters You can locally access the WebUI over WiFi. Table 5-16 Setting WIFI parameters Main Menu

Second-Level Menu

Third-Level Menu

Default Value

Value Range

Parameters Settings

WiFi Settings

WIFI Enable

Enable

Enable, Disable

Wifi SSID

HUAWEI_SIT E

A maximum of 31 characters, including lowercase English letters (a to z), uppercase English letters (A to Z), digits (0 to 9), and special characters (@_#-.).

Password

Changeme

A maximum of 31 characters, including lowercase English letters (a to z), uppercase English letters (A to Z), digits (0 to 9), and special characters (@_#-.). It is recommended that the password contain at least two types of characters and the length exceed eight characters.

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5.2 Common Maintenance Tasks 5.2.1 Backing Up the Current Settings The configuration file contains all user configuration information (such as parameter values and alarm configurations) about the current system. You can back up the configuration file to a local computer or a USB flash drive over the WebUI, and use the configuration file to rapidly configure parameters for other sites.

When importing the backup configuration file, ensure that the system types of the exported and imported configuration files are consistent. Figure 5-2 Backing up the current configuration

5.2.2 Importing a Configuration File You can quickly configure site parameters by importing a configuration file.

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Figure 5-3 Importing a configuration file

If an encryption password is set during the export of a configuration file, the decryption password entered during the import of the configuration file must be the same as the encryption password of the exported configuration file.

5.2.3 Restoring Factory Defaults

After factory defaults are restored, the monitoring unit restarts. After factory defaults are restored, all parameter values change to their default factory values. You are advised to back up the current settings before restoring factory defaults. Figure 5-4 Restoring factory defaults

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5.2.4 Upgrading Software You can use the WebUI and LCD to upgrade software for the SMU BSP, SMU, intelligent device SO library package, and southbound devices.



To retain pre-upgrade parameters, back up the data before upgrading software.



The SMU will restart automatically after the software for the BSP, SMU, and intelligent device SO library package is upgraded.



Exercise caution to choose the version rollback function during software upgrade. After version rollback, the user accounts created are deleted, and the initial user name and password are required for login.

Figure 5-5 Upgrading software

5.2.5 Changing a User Password Context For security purposes, change your password periodically. Only the system administrator can change user passwords.

Changing a User Password Step 1 Log in to the WebUI and choose Maintenance > User Management. The user management page is displayed.

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Figure 5-6 User management page

Step 2 Select the user whose password needs to be changed and click Modify. The dialog box for modifying user information is displayed. Figure 5-7 Changing the password

Step 3 Select Change Password, set New Password and Confirm Password, and click Confirm. The Recertification dialog box is displayed.

The administrator needs to set Old Password only when changing the administrator's own password.

Change the password in compliance with the following rules: 

The password must contain 6 to 20 characters.



The password must consist of at least two of the following types: digits, uppercase letters, lowercase letters, and special characters (! @ * - _ ? { } = /).

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The password must be different from the previous two passwords.



The password must be different from the user name or its reverse.

5 Common Tasks

Step 4 Set New Password of Current Login User and click Submit. ----End

Changing WiFi Password



You are advised to periodically change the WiFi password to improve account security and prevent unauthorized network attacks, such as data tampering.



Huawei will not be liable for any loss caused by your failure to change the password in time or to keep the new password properly.



The WiFi function is disabled by default. Enable the WiFi function before using it and disable it after using it to ensure network security.

Enable or disable the WiFi function: choose System Settings > Network Config > WIFI. Change the WiFi account password: choose System Settings > Network Config > WIFI.

5.2.6 Viewing Dry Contact Association Information Context 

You can view the information about association between dry contact outputs and alarms.



You can also view the information about association between dry contact inputs and devices.

Procedure Step 1 View the information about association between dry contact outputs and alarms.

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Figure 5-8 Viewing the information about association between dry contact outputs and alarms

Step 2 View the information about association between dry contact inputs and devices. Figure 5-9 View the information about association between dry contact inputs and devices

----End

5.2.7 Viewing Active Alarms Active alarms are the alarms that are not cleared.

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Figure 5-10 Viewing active alarms

5.2.8 Viewing Historical Alarms Prerequisites Historical alarms refer to alarms that have generated and then been cleared manually or automatically.

Procedure Step 1 To filter out historical alarms. Figure 5-11 Filtering out historical alarms

Step 2 View historical alarms.

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Figure 5-12 Viewing historical alarms

----End

5.2.9 Viewing Version Information View the monitoring version number to facilitate fault diagnosis and check whether the upgrade is successful. Figure 5-13 Viewing Version Information

5.2.10 Exporting Maintenance Information Context 

You can export historical alarms, active alarms, performance data, operation logs, and battery test records on the WebUI.



You can view and export e-label information about the power subrack, monitoring unit, and rectifiers on the WebUI.



You can export version information and system operating information in one-click mode on the WebUI to quickly collect information and identify system faults.



It takes about 5 minutes to collect fault information for each rectifier.

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Procedure Step 1 To export historical data. Figure 5-14 Exporting historical data

Step 2 To export e-label information. Figure 5-15 Exporting e-label information

Step 3 To collect rectifiers fault information. Figure 5-16 Collecting fault information

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Step 4 Collect lithium battery fault information. Figure 5-17 Collect lithium battery fault information

Step 5 To export fault information. Figure 5-18 Exporting fault information

The exported fault information includes the black box information about rectifiers and lithium batteries. If information export fails due to a browser error, wait for a certain period (30 minutes at most), log in, and try again.

----End

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6 Hardware Replacement

Hardware Replacement

6.1 Replacing an SMU02C Prerequisites 

An ESD wrist strap, ESD gloves, ESD box or bag, and cabinet door key are available.



The new SMU02C is intact.

Procedure Step 1 Connect the ground cable to the ESD wrist strap, and put on the ESD wrist strap and ESD gloves.

Record the software version of the old SMU. If the old SMU is damaged and cannot be viewed, send the barcodes of the old SMU and the cabinet to Huawei service personnel for query.

Step 2 Disconnect the communications cable from the SMU02C panel. Step 3 Push the locking latch leftwards. Step 4 Pull the handle outwards and remove the SMU02C. Figure 6-1 Removing the SMU02C

Step 5 Remove the SD card from the side of the SMU02C.

If no SD is installed, go to Step 7.

Step 6 Insert the SD card into the new SMU02C.

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Figure 6-2 Installing the SD card

Step 7 Place the new SMU02C in the slot, push the locking latch leftwards, and pull out the handle. Step 8 Gently push the SMU02C along guide rails until it is engaged. Close the handle, and push the locking latch rightwards. Figure 6-3 Installing the SMU02C

Step 9 Reconnect the communications cable to the SMU02C panel.

After replacing the old SMU with a new spare part, power on the new SMU and check its software version. If the software version of the new SMU is earlier than that of the old SMU, upgrade the new SMU software.

Step 10 Reset SMU02C parameters. ----End

Follow-up Procedure Pack the removed component and have it sent to the local Huawei warehouse.

6.2 Replacing a WIM01C1 Prerequisites 

An ESD wrist strap, ESD gloves, ESD box or bag, door key, and required tools are available.



The new WIM01C1 is intact.

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Procedure Step 1 Log in to the WebUI and record the WIM01C1 networking diagram. Step 2 Connect the ground cable of the ESD wrist strap, and wear the ESD wrist strap and ESD gloves. Step 3 Record the connection positions of cables on the WIM01C1 panel and disconnect the cables. Step 4 Loosen the screws on both sides of the WIM01C1 panel and take out the WIM01C1. Figure 6-4 Removing the WIM01C1

Step 5 Disconnect the power cables between the WIM01C1 and the UIM. Step 6 Loosen the screws that secure the WIM01C1 to the UIM and take out the WIM01C1. Step 7 Push the new WIM01C1 in place and secure it with holes aligned. Step 8 Reconnect the cables between the WIM01C1 and the UIM. Step 9 Push the UIM into the subrack. Step 10 Reconnect the cables to the new WIM01C1 panel based on the recorded information. Step 11 Disconnect the ground cable of the ESD wrist strap, and remove the ESD wrist strap and ESD gloves. Step 12 Log in to the WebUI and check that there is no alarm about the WIM01C1 and that its networking diagram is consistent with the recorded diagram. ----End

Follow-up Procedure Pack the removed component and send it to the local Huawei warehouse.

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6.3 Replacing a UIM02C Board Prerequisites 

An ESD wrist strap, ESD gloves, ESD box or bag, cabinet door key, and required tools are available.



The new UIM02C board is intact.

Procedure Step 1 Connect the ground cable to the ESD wrist strap, and put on the ESD wrist strap and ESD gloves. Step 2 Record the position of signal cables connected to the UIM02C panel, and then disconnect the signal cables. Step 3 Unscrew and take out the UIM02C. Figure 6-5 Taking out the UIM02C

Step 4 Disconnect the –48 V power cable from the UIM02C board.

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Figure 6-6 Disconnecting the –48 V power cable

(1) -48 V power port

Step 5 Record the connection positions of all cables including cables for internal and external circulation fans and flat cables on the UIM02C board, and then disconnect the cables. Step 6 Remove the UIM02C board. Figure 6-7 Removing the UIM02C board

Step 7 Take out and install the new UIM02C board. Step 8 Connect all the cables on the UIM02C board to the new UIM02C based on the recorded information. Step 9 Reconnect the –48 V power cable to the UIM02C board. Step 10 Push the UIM02C in place and tighten the screws. Step 11 Reconnect signal cables to the new UIM02C panel based on the recorded information. Step 12 Disconnect the ground cable from the ESD wrist strap, and remove the ESD wrist strap and ESD gloves. ----End

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Follow-up Procedure Pack the removed component and have it sent to the local Huawei warehouse.

6.4 Replacing a UIM02D Board The UIM02D consists of two user interface boards. This topic describes how to replace the boards.

Procedure Step 1 Record the positions where signal cables connect to the UIM02D panel, and then disconnect the signal cables. Step 2 Loosen the screws on the UIM02D panel and remove the UIM02D, as shown in Figure 6-8. Figure 6-8 Removing the UIM02D

Step 3 Disconnect the –48 V power cable from the UIM02D backplane. Figure 6-9 Disconnecting the –48 V power cable

Step 4 Disconnect the flat cable from the UIM02D backplane.

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Step 5 Remove the upper board from the UIM02D. 1.

Unscrew and remove the upper board from the UIM02D, as shown in the following figure. Figure 6-10 Removing the upper board from the UIM02D

2.

Disconnect the cables between upper and lower boards in the UIM02D.

Step 6 Remove the lower board from the UIM02D. 1.

Record the positions of signal cables and communications cables connected to the lower board, and disconnect the cables.

2.

Unscrew and remove the lower board from the UIM02D, as shown in the following figure.

Figure 6-11 Removing the lower board from the UIM02D

Step 7 Install a new lower board in the UIM02D. 1.

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Place a new lower board in the UIM02D, and tighten screws.

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Reconnect the removed signal cables and communications cables to the lower board based on the recorded information.

Step 8 Install a new upper board in the UIM02D. 1.

Reconnect the removed cables between upper and lower boards in the UIM02D.

2.

Place a new upper board in the UIM02D, and tighten screws.

Step 9 Reconnect the –48 V power cable and signal cables to the UIM02D panel based on the recorded information. Step 10 Push the UIM02D into the slot until its front panel aligns with the front panel of the monitoring unit, and tighten the screws. Step 11 Connect the signal cables to the original positions on the UIM02D panel. ----End

Follow-up Procedure Pack the removed component and have it sent to the local Huawei warehouse.

6.5 Replacing an UIM03D Board Prerequisites 

An ESD wrist strap, ESD gloves, ESD box or bag, cabinet door key, and required tools are available.



The new user interface board is intact.

Procedure Step 1 Connect the ground cable to the ESD wrist strap, and put on the ESD wrist strap and ESD gloves. Step 2 Note where signal cables are connected to the UIM03D panel. Record these positions and disconnect the cables. Step 3 Unscrew and remove the UIM03D. Step 4 Note where all cables are connected to the NIM02D. Record these positions and remove and the cables and NIM02D.

If no NIM02D is deployed, skip this step.

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Figure 6-12 Removing the NIM02D

Step 5 Record all cable connection positions on the user interface board and disconnect the cables. Step 6 Remove the user interface board, as shown in the following figure. Figure 6-13 Removing the UIM03D

Step 7 Take out and install the new user interface board. Step 8 Connect all the cables to the new user interface board based on the information you recorded. Step 9 Install the NIM02D and connect cables according to the information you recorded.

If no NIM02D is deployed, skip this step.

Step 10 Push the UIM03D in position and tighten the screws. Step 11 Reconnect the signal cables to the UIM03D panel based on the information you recorded.

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Step 12 Disconnect the ground cable from the ESD wrist strap, and remove the ESD wrist strap and ESD gloves. ----End

Follow-up Procedure Pack the removed component and have it sent to the local Huawei warehouse.

6.6 Replacing an UIM05B1 Prerequisites 

The ESD wrist strap, ESD gloves, ESD box or bag, and toolbox are available.



The new UIM05B1 is intact.

Procedure Step 1 Connect the ESD wrist strap ground cable, and wear the ESD wrist strap and ESD gloves. Step 2 Record the connection positions of cables on the UIM05B1 panel and remove the cables. Step 3 Loosen the screws on the UIM05B1 panel, pull the handle until it is engaged, and take out the UIM05B1. Figure 6-14 Removing the UIM05B1

Step 4 Install the new UIM05B1. Step 5 Install the cables based on the recorded information. ----End

Follow-up Procedure Pack the removed component and have it sent to the local Huawei warehouse.

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6.7 Replacing an NIM02D Board Prerequisites 

An ESD wrist strap, ESD gloves, ESD box or bag, cabinet door key, and required tools are available.



The new NIM02D board is intact.

Procedure Step 1 Connect the ground cable to the ESD wrist strap, and put on the ESD wrist strap and ESD gloves. Step 2 Record the connection positions of cables on the NIM02D panel and disconnect the cables. Step 3 Loosen the screws on both sides of the UIM02C panel and pull out the UIM02C. Step 4 Disconnect the power cables between the NIM02D board and the J1 port on the UIM02C. Step 5 Unscrew the NIM02D from the UIM02C board and take out the NIM02D board. Figure 6-15 Removing the NIM02D board

Step 6 Push the new NIM02D board in place and secure it with holes aligned. Step 7 Connect power cables between the power port on the NIM02D board and the J1 port on the UIM02C.

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Figure 6-16 Connecting power cables

(1) Power port on the NIM02D board

(2) J1 port on the UIM02C board

Step 8 Push the UIM02C into the subrack until its front panel is flush with that of the monitoring unit subrack and then tighten the screws. Step 9 Reconnect the cables to the new NIM02D panel based on the recorded information. Step 10 Disconnect the ground cable from the ESD wrist strap, and remove the ESD wrist strap and ESD gloves. ----End

Follow-up Procedure Pack the removed component and have it sent to the local Huawei warehouse.

6.8 Replacing an NIM01C3 Prerequisites 

An ESD wrist strap, ESD gloves, ESD box or bag, cabinet door key, and required tools are available.



The new NIM01C3 is intact.

Procedure Step 1 Connect the ground cable to the ESD wrist strap, and put on the ESD wrist strap and ESD gloves.

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Step 2 Record the positions where signal cables connect to the NIM01C3 panel, and then disconnect the signal cables. Step 3 Loosen the screws on both sides of the NIM01C3 panel. Step 4 Pull the handle rightwards to remove the NIM01C3. Figure 6-17 Removing an NIM01C3

Step 5 Remove the SIM card from the SIM card slot of the NIM01C3, and insert it into the SIM card slot of the new NIM01C3. Skip this step if no SIM card is installed. Step 6 Place the new NIM01C3 at the entry to the appropriate slot in the monitoring unit subrack, and push the NIM01C3 until its front panel is flush with the front panel of the monitoring unit subrack. Step 7 Push the handle inwards until it is engaged, and then tighten the screws. Figure 6-18 Installing an NIM01C3

Step 8 Connect the signal cables to the original positions on the NIM01C3 panel. Step 9 Disconnect the ground cable for the ESD wrist strap, and remove the ESD wrist strap and ESD gloves. ----End

Follow-up Procedure Pack the removed component and have it sent to the local Huawei warehouse.

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6.9 Replacing a CIM02C Prerequisites 

An ESD wrist strap, ESD gloves, ESD box or bag, cabinet door key, and required tools are available.



The new CIM02C is intact.

Procedure Step 1 Connect the ground cable to the ESD wrist strap, and put on the ESD wrist strap and ESD gloves. Step 2 Record the connection positions of cables on the CIM02C panel and disconnect the cables. Step 3 Loosen the screws on both sides of the CIM02C panel. Step 4 Pull the handle rightwards and take out the CIM02C. Figure 6-19 Removing a CIM02C

Step 5 Place the new CIM02C at the entry to the appropriate slot in the monitoring unit subrack, and push the CIM02C until its front panel is flush with the front panel of the monitoring unit subrack. Step 6 Push the handle inwards until it is engaged, and then tighten the screws. Figure 6-20 Installing a CIM02C

Step 7 Reconnect the cables to the new CIM02C panel based on the recorded information.

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Step 8 Disconnect the ground cable from the ESD wrist strap, and remove the ESD wrist strap and ESD gloves. ----End

Follow-up Procedure Pack the removed component and have it sent to the local Huawei warehouse.

6.10 Replacing a GIM01C Prerequisites 

An ESD wrist strap, ESD gloves, ESD box or bag, cabinet door key, and required tools are available.



The new GIM01C is intact.

Procedure Step 1 Connect the ground cable to the ESD wrist strap, and put on the ESD wrist strap and ESD gloves. Step 2 Record the connection positions of cables on the GIM01C panel and disconnect the cables. Step 3 Loosen the screws on both sides of the GIM01C panel. Step 4 Pull the handle rightwards and take out the GIM01C. Step 5 Place the new GIM01C at the entry to the appropriate slot in the monitoring unit subrack, and push the GIM01C until its front panel is flush with the front panel of the monitoring unit subrack. Step 6 Push the handle inwards until it is engaged, and then tighten the screws. Step 7 Reconnect the cables to the new GIM01C panel based on the recorded information. Step 8 Disconnect the ground cable from the ESD wrist strap, and remove the ESD wrist strap and ESD gloves. ----End

Follow-up Procedure Pack the removed component and have it sent to the local Huawei warehouse.

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A Parameter Lists

A

Parameter Lists

When you set parameters such as DG startup/shutdown, air conditioner startup/shutdown, LLVD/BLVD voltage, AC circuit breaker capacity, mains capacity, load connection/disconnection control, battery connection/disconnection control, HVDC/PSU/SSU/MIMO/24 V module startup/shutdown, DG capacity, and rectifier power limit on the WebUI, the site power supply may be affected.



The menu hierarchy and parameter display depend on the power supply scenario, system type, system parameter settings, and device connections.



# indicates that the parameter is displayed only when related devices are connected or related parameters are set.

A.1 LCD Menu Hierarchy Figure A-1 LCD menu hierarchy

Table A-1 LCD menu description Menu Item

Description

Active Alarm

Views active alarms in the system.

Running Information

Views the operating status of the power system, rectifiers, batteries, and other modules in the system.

Setting Wizard

Quickly sets common parameters, such as the number of battery strings, rated battery capacity, date, time, and network parameters.

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A Parameter Lists

Menu Item

Description

Parameters Settings

Sets parameters for the power system, rectifiers, batteries, and other modules in the system.

Running Control

Manually controls the power system, rectifiers, batteries, and other modules in the system, such as switching between equalized charging and float charging, starting or shutting down rectifiers, clearing historical alarms, and restarting the SMU.

Site Maintain

Performs USB-based operations such as upgrade, export, and site setup.

User Management

Change LCD login password, user logout.

A.2 Running Information Table A-2 Running Information menu hierarchy Second-Leve l Menu

Third-Level Menu

Fourth-Level Menu

Fifth-Level Menu

Site Unit

Basic Information

AC Input Power

-

DC Output Power

-

Total AC Comsuption

-

Total DC Generation

-

ATS 1 State

-

NOTE This parameter is displayed only when the DG is connected.

DC Power

DC Power

DC Output Distribution

DC Output Voltage

-

Total Load Current

-

Current Supply Type

-

DC Output Voltage

-

Total Load Current

-

DC Load n Pwr. Cons

-

NOTE This parameter is displayed only when Load Shunts is set to 1, 2, 3, 4 or 5.

Shared Load Cons

-

NOTE This parameter is displayed only when Include Public Load is set to Yes.

Shared Load Curr

-

NOTE This parameter is displayed only when

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Second-Leve l Menu

Third-Level Menu

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Include Public Load is set to Yes.

DC Load n Current

-

NOTE This parameter is displayed only when Load Shunts is set to 1, 2, 3, 4 or 5.

Load n Last Mnth Elec.

-

NOTE This parameter is displayed only when Load Shunts is set to 1, 2, 3, 4 or 5.

Load n Real-time Cur

-

NOTE This parameter is displayed only when Load Shunts is set to 1, 2, 3, 4 or 5.

Last Mth Share Cons

-

NOTE This parameter is displayed only when Include Public Load is set to Yes.

Load n Last Mnth Cons

-

NOTE This parameter is displayed only when Load Shunts is set to 1, 2, 3, 4 or 5.

Load Fuse Status

-

Load n Power

-

NOTE This parameter is displayed only when Load Shunts is set to 1, 2, 3, 4 or 5.

LLVD Number

-

Shared Load Power

-

NOTE This parameter is displayed only when Include Public Load is set to Yes.

AC Distribution

Total Load Power

-

Total Load Energy Consumption

-

Phase L1 Voltage

-

NOTE This parameter is displayed only when AC Mode is set to 3-Phase 4-Wire.

Phase L2 Voltage

-

NOTE This parameter is displayed only when AC Mode is set to 3-Phase 4-Wire.

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Second-Leve l Menu

Third-Level Menu

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Phase L3 Voltage

-

NOTE This parameter is displayed only when AC Mode is set to 3-Phase 4-Wire.

Phase L1 Current

-

NOTE This parameter is displayed only when AC Mode is set to 3-Phase 3-Wire or 3-Phase 4-Wire.

Phase L2 Current

-

NOTE This parameter is displayed only when AC Mode is set to 3-Phase 3-Wire or 3-Phase 4-Wire.

Phase L3 Current

-

NOTE This parameter is displayed only when AC Mode is set to 3-Phase 3-Wire or 3-Phase 4-Wire.

AC Voltage

-

NOTE This parameter is displayed only when AC Mode is set to 1-Phase or 2-Phase 2-Wire.

AC Current

-

NOTE This parameter is displayed only when AC Mode is set to 1-Phase or 2-Phase 2-Wire.

Line L1-L2 Voltage

-

NOTE This parameter is displayed only when AC Mode is set to 3-Phase 3-Wire.

Line L2-L3 Voltage

-

NOTE This parameter is displayed only when AC Mode is set to 3-Phase 3-Wire.

Line L3-L1 Voltage

-

NOTE This parameter is displayed only when AC Mode is set to 3-Phase 3-Wire.

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AC Frequency

-

Active Power

-

Total Energy Consum

-

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A Parameter Lists

Second-Leve l Menu

Third-Level Menu

Fourth-Level Menu

Fifth-Level Menu

UIM

DO Control Status

ALM n Control Status

-

Controller

NetEco Link Mode

-

-

Rectifier

Rectifier Group

Total DC Output Current

-

Total DC Out Power

-

Total AC Input Power

-

Rectifier n

DC Outp. Term. Volt.

Rectifier Info

DC Output Current DC Out Power AC Volotage Rated Efficiency Real-time Efficiency Rectifier Temp. Cur. Limiting Status Run Status PSU Brand Hardware Version Software Version Bar Code Mains #

Mains State

-

-

Phase L1 Volt

-

-

-

-

-

-

NOTE This parameter is displayed only when AC Model is set to 3-Phase 4-Wire.

Phase L2 Volt NOTE This parameter is displayed only when AC Model is set to 3-Phase 4-Wire.

Phase L3 Volt NOTE This parameter is displayed only when AC Model is set to 3-Phase 4-Wire.

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Second-Leve l Menu

A Parameter Lists

Third-Level Menu

Fourth-Level Menu

Fifth-Level Menu

Phase L1 Curr

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

-

NOTE This parameter is displayed only when AC Model is set to 3-Phase 3 Wire or 3-Phase 4-Wire.

Phase L2 Curr NOTE This parameter is displayed only when AC Model is set to 3-Phase 3 Wire or 3-Phase 4-Wire.

Phase L3 Curr NOTE This parameter is displayed only when AC Model is set to 3-Phase 3 Wire or 3-Phase 4-Wire.

AC Voltage NOTE This parameter is displayed only when AC Model is set to 1-Phase or 2-Phase 2-Wire.

AC Curr NOTE This parameter is displayed only when AC Model is set to 1-Phase or 2-Phase 2-Wire.

Line L1-L2 Volt NOTE This parameter is displayed only when AC Model is set to 3-Phase 3-Wire.

Line L2-L3 Volt NOTE This parameter is displayed only when AC Model is set to 3-Phase 3-Wire.

Line L3-L1 Volt NOTE This parameter is displayed only when AC Model is set to 3-Phase

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Second-Leve l Menu

Third-Level Menu

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

AC Freq

-

-

Active Power

-

-

Phase L1 Factor

-

-

Phase L2 Factor

-

-

Phase L3 Factor

-

-

Grid Quality Grade

-

-

Total Consumption

-

-

Total Supply Time

-

-

Genset Group

Total Energy Yield

-

Genset n

Total Energy Yield

-

NOTE This parameter is displayed only when an intelligent DG is connected.

Genset State

-

Total Runtime

-

Switch Reason

-

Phase L1 Voltage

-

Phase L2 Voltage

-

Phase L3 Voltage

-

Phase L1 Current

-

Phase L2 Current

-

Phase L3 Current

-

Output Power

-

AC Frequency

-

Phase L1 Factor

-

Phase L2 Factor

-

Phase L3 Factor

-

Genset Batt Volt

-

Coolant Temp

-

Rotation Speed

-

Cabin Temp

-

Load Rate

-

3-Wire.

Genset #

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Second-Leve l Menu

Battery

Third-Level Menu

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Switch Rate

-

Oil Pressure

-

Oil Level

-

Last Maint Time

-

Hourly Fuel Consum

-

Remain Runtime

-

Genset n

Total Energy Yield

-

NOTE This parameter is displayed only when a traditional DG is connected.

Genset State

-

Total Runtime

-

Switch Reason

-

Phase L1 Voltage

-

Phase L2 Voltage

-

Phase L3 Voltage

-

Phase L1 Current

-

Phase L2 Current

-

Phase L3 Current

-

Output Power

-

AC Frequency

-

Load Rate

-

Last Maint Time

-

Hourly Fuel Consum

-

Remain Runtime

-

Battery Status

-

Total Batt. Current

-

Total Rated Cap.

-

Remaining Cap.

-

Remain Cap. Percent

-

Backup Time

-

Cur. Limiting Status

-

Test Status

-

Battery Group

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Second-Leve l Menu

Third-Level Menu

Battery String

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Battery Temp. 1

-

Total Dis Cap.

-

Total Dis Times

-

Battery Type

-

Battery String n

Rated Capacity Middle Voltage

GPS

Battery Test Records

-

-

Backup Power Info

-

-

Longitude

-

-

Latitude

-

-

Altitude

-

-

CollectorName

-

-

-

-

-

-

Total Batt. Current

-

Battery Status

-

Battery Temp. N

-

Battery Status

-

Batt Voltage

-

Batt Current

-

Temperature

-

NOTE This parameter is displayed only when the GPS is connected.

Factory Soft Version NOTE This parameter is displayed only when the GPS is connected.

Factory Name NOTE This parameter is displayed only when the GPS is connected.

Low Cap Li-ion Batt #

Li-ion Battery Group

NOTE This parameter is displayed only when Battery Model is set to BBS 4840Z.

Li Battery #

Li Battery Group

NOTE This parameter is displayed only when Battery

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Second-Leve l Menu

Third-Level Menu

Model is set to ESM-A, ESU-A or ESM-BX.

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Normal Comm. BMUs

-

Total Capacity

-

Remain Cap. Percent

-

Bakcup Time

-

Total Discharge Times

-

Total Dis Cap.

-

Test Status

-

NOTE This parameter is displayed only when Battery Model is set to ESU-A or ESM-A.

DTS #

DCDB #

Battery Test Records

-

-

DTS Group

-

-

DTS n

Comm Status

-

Running Mode

-

Main Battery Voltage

-

Back Battery Voltage

-

Combined Voltage

-

Power Supply Mode

-

Hardware Version

-

Software Version

-

DCDB Number

-

Total Load Number

-

Unused Load Number

-

Basic Information

Comm Status

DCDB Group

DCDB n

Input Voltage Total Load Number Unused Load Number Total Output Current Total Output Power DCDB Slot No. Load n

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Third-Level Menu

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu Load n Current Load n Power

Asset Info

Software Version Hardware Version

Comm. Ex. Board #

iBOX #

NIM01C3 n

iBOX Equip n

Comm State

-

Hardware Version

-

Software Version

-

COM1 Power Volt

-

COM2 Power Volt

-

DIP Switch Address

-

Hardware Version

-

Software Version

-

Communication Status

-

RF Software Version

-

NIM02D

-

-

-

Efuse Group #

EFUSE n

Basic Information

Input Voltage

Load n

Load n Used Load n Current Load n Status Load n Power Load n Consumption

Asset Info

Software Version Hardware Version EFUSE Name

Temp. Control Info.

Sensor

Temp. Control Group

Indoor Vent Temp.

-

Outdoor Amb Temp.

-

Fan Group

Fan n Speed

-

Heater Device

Control Status

-

Door Sensor #

Door Status

-

Water Sensor #

Water Status

-

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Second-Leve l Menu

AIM n #

A Parameter Lists

Third-Level Menu

Fourth-Level Menu

Fifth-Level Menu

Smoke Sensor #

Smoke Sensor Status

-

Infrared Sensor #

IR Sensor Status

-

Humiture Sensor #

Ambient Temperature

-

Ambient Humidity

-

Glass Brk Snsr #

Glass Broken Status

-

Vibration Sensor #

Vibration Sensor Status

-

AC Frequency

-

-

Phase L1 Voltage

-

-

Phase L2 Voltage

-

-

Phase L3 Voltage

-

-

Phase L1 Current

-

-

Phase L2 Current

-

-

Phase L3 Current

-

-

Active Power

-

-

Total Power Factor

-

-

Phase L1 Pwr. Factor

-

-

Phase L2 Pwr. Factor

-

-

Phase L3 Pwr. Factor

-

-

Active Electricity

-

-

SoftWare Version

-

-

Hardware Version

-

-

BootLoader Version

-

-

Phase L1 Power

-

-

Phase L2 Power

-

-

Phase L3 Power

-

-

Phase L1 Reactive Power

-

-

Phase L2 Reactive Power

-

-

Phase L3 Reactive Power

-

-

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A Parameter Lists

Second-Leve l Menu

Third-Level Menu

Fourth-Level Menu

Fifth-Level Menu

ATS #

ATS n

Running Mode

-

Power Supply Mode

-

Work Scenario

-

Software Version

-

Hardware Version

-

Wireless Public IP

-

-

Virtual Network IP

-

-

MIMO 1

12DC Output Voltage

-

12DC Output Current

-

24AC Output Voltage

-

24AC Output Current

-

Software Version

-

Hardware Version

-

FSU

MIMO Module #

Historical Alarm

-

-

-

Performance

Total AC Consumption

Total AC Consumption

-

Total DC Generation

Total DC Generation

-

Total Consumption

Total Consumption

-

Acid Batt Dis. Cap.

Acid Batt Dis. Cap.

-

Batt Grou1 Dischg

-

-

Batt Grou2 Dischg

-

-

BackBatt3 Dis. Cap.

-

-

Solar Power Supply

-

-

Li Batt Dis. Cap.

-

-

Controller

Monitor Brd Barcode

-

PowerSubrack Barcode

-

Cabinet Barcode

-

Ext. Board Barcode

-

Rectifier n

Bar Code

-

EFUSE n

Barcode

-

ATS n

Barcode Info

-

Barcode Info NOTE Only the information about connected components is displayed.

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A Parameter Lists

Third-Level Menu

Fourth-Level Menu

Fifth-Level Menu

GMU n

GMU Barcode

-

AIM n

Barcode

-

Battery Group

TCB Barcode

-

Comm. Ex. Board

NIM01C3 1

Comm Ex Brd Barcode

NIM02D

Barcode Info

-

Camera #

Camera Group

Camera n

-

NOTE Applies when the serial port camera is connected.

Camera n

Software Version

-

Vendor Type

-

Port number

-

Camera #

Camera Group

Camera n

-

NOTE Applies when the IP camera is connected.

Camera n

Software Version

-

Vendor Type

-

IP Address

-

Connection Status

-

-

Signal Strength

-

-

Data Mode

-

-

IP Address

-

-

Current SIM Card

-

-

SIM Card 1 Status

-

-

SIM Card 1 IMSI

-

-

SIM Card 1 Number

-

-

SIM 1 On-day Traffic

-

-

SIM Card 2 Status

-

-

SIM Card 2 IMSI

-

-

SIM Card 2 Number

-

-

SIM 2 On-day Traffic

-

-

iRELAY 1

SIREN-S Ctrl State

-

SIREN-L Ctrl State

-

12V DC Volt State

-

Hall n Current

-

Mobile Data Info

Other Device Info

iDATA 1

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Third-Level Menu

5G Blade Power n

iACMETER

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A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

DC Voltage

-

COM n State

-

Port n D n State

-

DI n State

-

48V DC Voltage

-

48V DC Load Current

-

48V Port Current

-

System Type

-

Software Version

-

Hardware Version

-

Phase L1 Voltage

-

Phase L2 Voltage

-

Phase L3 Voltage

-

Phase L1 Current

-

Phase L2 Current

-

Phase L3 Current

-

Power Unit n 57V Port DC Voltage

-

Power Unit n 57V Port Load Current

-

Power Frame Barcode

-

Total Consumption

-

Total Load Energy Consumption

-

Input n AC Frequency

-

Input n phase L1 V.

-

Input n phase L2 V.

-

Input n phase L3 V.

-

Ch n Ph L1 Current

-

Ch n Ph L2 Current

-

Ch n Ph L3 Current

-

Ch n Active Power

-

Ch n Power Factor

-

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Third-Level Menu

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Ch n Power Consump

-

Dry Contact n Statuse

-

WIM01C1

Current Net Standard

-

DG Comm Ex Board

Comm Status

-

Hardware Version

-

Software Version

-

Barcode Info

-

Consumption Readings

-

AC Power Consumption

-

Air Condition Runtime

-

Running State

-

Remaining Fuel

-

Fuel Level

-

Total Fuel Consump

-

Consump After Refuel

-

Total Refueling

-

Air Conditioner n

Fuel Tank

A.3 Setting Wizard Table A-3 Setting Wizard menu hierarchy Second-Level Menu

Third-Level Menu

Default Value

Value Range

Site Unit

Battery Vendor

Other

AGISSON, Coslight, Dengta, Eltek, EnerSys, Exide, LEOCH, Narada, NorthStar, Shoto, Other

Battery Model

12V VRLA

DCB-A, DCB-A1, DCB-B, DCB-Y, ESU-A, ESM-A, ESM-BX, FCB-A, FCB-B, SCB-A, SCB-A1, TCB-A, TCB-B, TCB-C, 12V VRLA, 2V VRLA, FLOOD, 6-GFM-X, 6-GFMF, Rebak-F4899T, 12TD-F, SBS-F, M12V-FT, LPF12-H, 6-GFM-F, 12NDF, Blue, Red,

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Third-Level Menu

A Parameter Lists

Default Value

Value Range 6-FMX, 6-XFMJ, GFM, BBS 4840Z

Mains Qty

1

0 to 2

Genset Qty

0

0 to 2

Tank Qty

1

0 to 4

Battery N Connected

Yes

Yes, No

Single-String Cap.

150 Ah

5-10000

Battery Cable Length

1m

0-100

Batt Cable CS Area

35 mm2

1-1000

Configuration Mode

Active/Standby

Active/Standby, Mutual Backup

Schedule Mode

Cycle Mode

Cycle Mode, Tradition Mode, No Control Mode

Genset n Parameters

Rated Power

12.5 kW

1.0 to 5000.0

Date and Time

Time Zone

UTC +08:00 Beijing

-

Date and Time

-

-

NTP Enable

No

Yes, No

NTP Primary IP

127.0.0.1

-

127.0.0.1

-

123

1-65535

1 Min

1-1440

NOTE This parameter is displayed only when DG Number is set to 2.

Batt Parameters

Genset Group Para.

NOTE This parameter is displayed only when NTP Enable is set to Yes.

NTP Backup IP NOTE This parameter is displayed only when NTP Enable is set to Yes.

NTP Port Nummber NOTE This parameter is displayed only when NTP Enable is set to Yes.

NTP Sync. Interval NOTE This parameter is displayed

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Second-Level Menu

Third-Level Menu

A Parameter Lists

Default Value

Value Range

NetEco Primary IP

192.168.0.10

-

NetEco Backup IP

192.168.0.10

-

Site ID

-

-

IP Type

IPv4

IPv4, IPv6

IP Address

192.168.0.10

-

Subnet Mask

255.255.255.0

-

Default Gateway

192.168.0.1

-

IPv4 DSCP

46

0 to 63

VLAN Enable

No

Yes, No

VLAN ID

0

0 to 4094

VLAN Priority

5

0 to 7

Carrier Operator

Automatic

Automatic, Others

SIMn Acc Point Name

-

A maximum of 28 characters, including lowercase English letters (a-z), uppercase English letters (A-Z), digits (0-9), and special characters (@_#*-.).

only when NTP Enable is set to Yes.

NetEco Parameters

Network Parameters

Dial Parameters

NOTE This parameter is displayed only when Carrier Operator is set to Others.

SIMn Access Point No

*99#

NOTE This parameter is displayed only when Carrier Operator is set to Others.

SIMn User Name

3GNET

NOTE This parameter is displayed only when Carrier Operator is set to Others.

SIMn User Password

-

NOTE This parameter is displayed only when Carrier Operator is set to Others.

A maximum of 27 characters, including lowercase English letters (a-z), uppercase English letters (A-Z), digits (0-9), and special characters (@_#*-.). It is recommended that the password contain at least two types of characters and the length exceed six characters.

Rect Addr Setting

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Rect. Address Setting

No

Copyright © Huawei Technologies Co., Ltd.

Yes, No

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Third-Level Menu

Default Value

Value Range

n. Rectifire Address

-

-, 1~60

Yes

Yes

NOTE This parameter is displayed only when Rect. Address Setting is set to Yes.

Saving Settings NOTE This parameter is displayed only when Rect. Address Setting is set to Yes.

A.4 Parameters Settings Table A-4 Parameters settings menu hierarchy SecondLevel Menu

Third-Level Menu

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

Site Unit

Basic Parameters

Site ID

-

-

-

Mains Qty

-

1

0 to 2

Genset Qty

-

0

0 to 2

Tank Qty

-

1

0 to 4

Turn-on Power Limit

-

NO

YES, NO

iMix Enabled

-

Enable

Enable, Disable

AC Voltage Mode

-

Voltage Mode

Percentage Mode, Voltage Mode

AC Phase OV Thres.

-

280 V

60 to 300

NOTE This parameter is displayed only when Genset Qty is set to 2.

DC Power n

DC Power

NOTE This parameter is displayed only when Hybrid Scenario is set to YES.

AC Distribution

NOTE This parameter is

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Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Value Range

-

180 V

60 to 300

-

130%

110-200

-

80%

1-90

-

280 V

60 to 600

displayed only when AC Voltage Mode is set to Voltage Mode and AC Model is 1-Phase, 2-Phase 2-Wire or 3-Phase 4-Wire.

AC Phase UV Thres. NOTE This parameter is displayed only when AC Voltage Mode is set to Voltage Mode and AC Model is 1-Phase, 2-Phase 2-Wire or 3-Phase 4-Wire.

AC Phase OV Thres. NOTE This parameter is displayed only when AC Voltage Mode is set to Percentage Mode and AC Model is 1-Phase, 2-Phase 2-Wire or 3-Phase 4-Wire.

AC Phase UV Thres. NOTE This parameter is displayed only when AC Voltage Mode is set to Percentage Mode and AC Model is 1-Phase, 2-Phase 2-Wire or 3-Phase 4-Wire.

AC Line OV

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Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Value Range

-

180 V

60 to 600

-

220 V

60-600

-

130%

110-200

-

80%

1-90

Thres. NOTE This parameter is displayed only when AC Voltage Mode is set to Voltage Mode and AC Model is 3-Phase 3-Wire.

AC Line UV Thres. NOTE This parameter is displayed only when AC Voltage Mode is set to Voltage Mode and AC Model is 3-Phase 3-Wire.

Rated Line Volt NOTE This parameter is displayed only when AC Voltage Mode is set to Percentage Mode and AC Model is 3-Phase 3-Wire.

AC Line OV Thres. NOTE This parameter is displayed only when AC Voltage Mode is set to Percentage Mode and AC Model is 3-Phase 3-Wire.

AC Line UV Thres. NOTE This parameter is displayed only when AC Voltage Mode is set to Percentage Mode and AC

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Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Value Range

Rated AC Frequency

-

50 Hz

40 to 70

Over AC Freq

-

110%

105 to 130

Uder AC Freq

-

90%

70 to 95

LLVD n Enabled

-

Enable

Enable, Disable

LLVD n Mode

-

Voltage Mode

Voltage Mode, Capacity Mode, Time Mode

-

44.0 V

36.0 to 56.0

-

51.5 V

37.0 to 58.0

-

15%

0 to 99

-

360 min

5 to 1000

Model is 3-Phase 3-Wire.

DC Output Distribution

NOTE This parameter is displayed only when LLVD n Enabled is set to Enable.

LLVD n Voltage NOTE This parameter is displayed only when LLVD n Enabled is set to Enable.

LLVD n Recon Volt NOTE This parameter is displayed only when LLVD n Enabled is set to Enable.

LLVDn Capacity NOTE This parameter is displayed only when LLVD n Mode is set to Capacity Mode.

LLVDn Time NOTE This parameter is displayed only when LLVD n Mode is set to Time Mode.

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Third-Level Menu

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

Load Shunts

-

0

0-5

LLVD PD Enb

-

Disable

Enable, Disable

LLVD PD Time

-

23:00:00

00:00:00-23:00:00

-

480 min

1 to 1439

LLVD HTD Enb

-

Disable

Enable, Disable

LLVD HTD Temp

-

65.0 degC

25.0 to 80.0

-

60 s

5 to 90

DC Over Voltage

-

58.0 V

53.0 to 60.0

DC Under Volt

-

45.0 V

36.0 to 57.0

Ultra Over Volt

-

59.0 V

53.0

Ultra Under Volt

-

44.0 V

36.0 to 57.0

DG 1 ON/OFF Control Do

-

-

ALM2

ALM1 to ALM8, None

DG 1 Auxi

-

-

None

ALM1 to ALM8,

NOTE This parameter is displayed only when LLVD PD Enb is set to Enable.

LLVD PD Duration NOTE This parameter is displayed only when LLVD PD Enb is set to Enable.

NOTE This parameter is displayed only when LLVD HTD Enb is set to Enable.

LLVD Delay Time NOTE This parameter is displayed only when LLVD Enabled is set to Enable.

UIM NOTE This paramete

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SecondLevel Menu r varies with the system type.

Controller

Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Preheat DO

Value Range

None

DG 1 Run. Status Det.

-

-

DIN4

DIN1 to DIN6, None

DG 2 ON/OFF Control Do

-

-

ALM4

ALM1 to ALM

DG 2 Auxi Preheat DO

-

-

None

ALM1 to ALM8, None

DG 2 Run Status Det.

-

-

DIN5

DIN1 to DIN6, None

ATS 1 Run Deterction

-

-

DIN3

DIN1 to DIN6, None

ATS 2 Run Deterction

-

-

DIN6

DIN1 to DIN6, None

ATS DI Cond. AC Fail

-

-

Close

Open, Close

Dry Contact Open DG

-

-

DIN1

DIN1 to DIN6, None

Buzzer Enable

-

-

No

Yes, No

Buzzer Alm. Duration

-

-

10 min

1 to 100

IP Network Priority

-

-

High

High, Medium, Low

Inband Net Priority

-

-

Medium

High, Medium, Low

Wireless Net Priority

-

-

Low

High, Medium, Low

Run. Time Sw. Net.

-

-

60 min

1 to 1440

Traffic Fluct

-

-

50 MB/Day

0 to 10000

8, None

NOTE This parameter is displayed only when Buzzer Enable is set to Yes.

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SecondLevel Menu

Third-Level Menu

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

Heartbeat Duration

-

-

120s

10 to 180

IP Net. Timeout

-

-

5 min

5 to 1440

Inband Net. Timeout

-

-

5 min

5 to 1440

Wire. Net. Timeout

-

-

30 min

30 to 1440

North MS Config

-

-

Enable

Enable, Disable

Rectifier Group

Default Output Volt

-

53.5 V

48.0 to 58.0

OV Prot.Thres.

-

59.5 V

56.0 to 60.5

Sequential St. Int

-

0s

0 to 20

High Rect. Capacity

-

5%

0 to 150

Low Rect. Capacity

-

75%

0 to 150

Max. Limited Current

-

121%

10 to 121

Thres.

Rectifier

NOTE The default output voltage of rectifiers after the communication with the monitoring unit fails.

NOTE Interval for starting the rectifiers sequentially.

NOTE Percentage of the expected maximum rectifier output current to the rated rectifier output current. For example, if a power system is configured with three 50 A rectifiers, and you need an output current of 120 A, then set this parameter to 80%, which is obtained from 120 A/(50 A x 3).

WALK-IN

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No

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Yes, No

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SecondLevel Menu

Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Value Range

-

8s

8 to 200

-

NO

Yes, No

Enable WALK-IN Time NOTE This parameter is displayed only when WALK-IN Enable is set to Yes.

Energy Saving

Hibernation Enable

NOTE  No: Hibernation is disabled. 

Hibernation Mode

-

Intelligent Mode

NOTE This parameter is displayed only when Hibernation Enable is set to Yes.

Hiber. Without Batt.

Intelligent Mode, High Efficiency Mode, Time Mode NOTE  Time Mode: Rectifiers with shorter runtime take precedence for work.

-

No

NOTE This parameter is displayed only when Hibernation Enable is set to Yes.

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Yes: The monitoring unit hibernates rectifiers when the hibernation condition is met.

Copyright © Huawei Technologies Co., Ltd.



High Efficiency Mode: Rectifiers with higher real-time efficiency take precedence for work.



Intelligent Mode: The monitoring unit instructs rectifiers to hibernate based on the rectifier runtime and real-time efficiency.

Yes, No NOTE Indicates whether hibernation is enabled when batteries are not connected. NOTE If you enable hibernation when batteries are not connected to the power

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Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Value Range

system, the loads may experience power failures. Exercise caution when using this function.

Min. Rdnt. Coef.

-

0.20

NOTE This parameter is displayed only when Hibernation Enable is set to Yes.

Min. Working Rects.

NOTE Ratio of the minimum redundant current to the rated rectifier current. For example, if the rated rectifier current is 50 A and a redundant current of 10 A is required, set Min. Redundant Coefficient to 0.2 (10 A/50 A = 0.2).

-

2

-

55%

-

72.0 h

-

7 Day

NOTE

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0.5 to 168.0 NOTE All rectifiers stop hibernation if the power system experiences an exception. After the power system recovers, rectifiers attempt to hibernate again when the time specified by Hibernation Stop Duration has elapsed.

NOTE This parameter is displayed only when Hibernation Enable is set to Yes.

Circulation Period

10 to 100 NOTE Percentage of the rectifier loading capacity to the rated capacity, at which the rectifier reaches maximum efficiency.

NOTE This parameter is displayed only when Hibernation Enable is set to Yes.

Hiber. Stop Duration

1 to 100 NOTE Minimum number of working rectifiers allowed after hibernation is enabled.

NOTE This parameter is displayed only when Hibernation Enable is set to Yes.

Best Efficiency Pt.

0.05 to 1.00

Copyright © Huawei Technologies Co., Ltd.

1 to 365 NOTE Period for alternating

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Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

This parameter is displayed only when Hibernation Enable is set to Yes.

Phase Balance

hibernating rectifiers with working rectifiers. When the period expires, the monitoring unit starts all rectifiers. When the rectifiers have worked for 2 hours, the monitoring unit instructs some of them to hibernate again.

-

Disable

NOTE This parameter is displayed only when Hibernation Enable is set to Yes.

Staggerin g Elec Para

Value Range

Relative Balance, Absolute Balance, Disable NOTE If the configuration of rectifiers meets the three-phase balance requirement and intelligent rectifier hibernation is enabled in a three-phase power system, the rectifiers corresponding to the three phases try to hibernate. 

Absolute Balance: The same quantity of rectifiers must correspond to any two phases.



Relative Balance: The difference in quantity between the working rectifiers corresponding to any two phases must be less than or equal to 1.

Rectifier n

PSU Brand

-

-

-, 0 to 9, a-z, A-Z

Stag Elec Enb

-

-

Disable

Enable, Disable

Battery Disc Mode

-

-

Battery Life Priority

Battery Life Priority, Staggering Priority

NOTE This parameter is displayed only when Stag Elec Enb is set to Enable.

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A Parameter Lists

Third-Level Menu

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

Max Disc Times Per Day

-

-

2

1 to 10

-

-

10%

5 to 50

-

-

Automatic Mode

Automatic Mode, Manual Mode

-

-

2000-01-01 00:00:00

-

-

-

2000-01-01 00:00:00

-

NOTE This parameter is displayed only when Stag Elec Enb is set to Enable.

Max Disc Cap Per Day NOTE This parameter is displayed only when Stag Elec Enb is set to Enable.

Schedule Mode NOTE This parameter is displayed only when Stag Elec Enb is set to Enable.

Star Time NOTE This parameter is displayed only when Schedule Mode is set to Manual Mode.

End Time NOTE This parameter is displayed only when Schedule Mode is set to Manual

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SecondLevel Menu

Third-Level Menu

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

-

-

Disable

Enable, Disable

-

-

48.0 V

45.0 to 53.0

-

-

60%

0 to 90

-

-

3

1 to 20

-

-

15 min

1 to 600

Mode.

Batt Abn Disable Stag NOTE This parameter is displayed only when Stag Elec Enb is set to Enable.

End Volt of Stag Elec NOTE This parameter is displayed only when Batt Abn Disable Sta is set to Enable.

End SOH of Stag Elec NOTE This parameter is displayed only when Batt Abn Disable Sta is set to Enable.

Time of Disable Stag NOTE This parameter is displayed only when Batt Abn Disable Sta is set to Enable.

Duration of Disable Stag NOTE This parameter is displayed

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Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

Mains Peak Shave Enb

-

No

Yes, No

Cap for Peak Shave

-

200.0 kW

1.0 to 999.0

-

1000 A

1 to 10000

-

0.8

0.1 to 1.0

Rated Phase Volt

-

220 V

60 to 300

Peak Shaving SOC

-

30%

15 to 90

Peak Shaving SOC (Mix.)

-

15%

15 to 90

Power-On Hysteresis for LLVD in Peak Shaving

-

20%

10 to 85

Batt Backup Enable

-

Yes

Yes, No

Allow A/C Shutdown in Peak Shaving

-

No

Yes, No

only when Batt Abn Disable Sta is set to Enable.

AC Peak Shaving

AC Parameters

NOTE This parameter is displayed only when Mains Peak Shave Enb is set to YES.

Breaker Rated Curr NOTE This parameter is displayed only when Mains Peak Shave Enb is set to YES.

Derating Coef NOTE This parameter is displayed only when Mains Peak Shave Enb is set to YES.

Peak Shaving Para

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Mains #

Third-Level Menu

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

Allow LLVD n Disconnection in Peak Shaving

-

Yes

Yes, No

AC Mode

-

-

3-Phase 4-Wire

2-Phase 2-Wire, 1-Phase, 3-Phase 4-Wire, 3-Phase 3-Wire

AC Volt Mode

-

-

Voltage Mode

Voltage Mode, Percentage Mode

Main Line OV Thres.

-

-

286 V

242 to 760

-

-

176 V

2 to 342

-

-

220 V

104 to 520

NOTE This parameter is available only when AC Volt Mode is Voltage Mode and AC Model is 3-Phase 3-Wire.

Main Line UV Thres. NOTE This parameter is available only when AC Volt Mode is Voltage Mode and AC Model is 3-Phase 3-Wire.

Rated AC Line Volt NOTE This parameter is available only when AC Volt Mode is Percentage Mode and AC Model is 3-Phase

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Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

-

-

130%

110 to 200

-

-

80%

1 to 90

-

-

286 V

242 to 440

-

-

176V

2 to 198

3-Wire.

Main Line OV Thres. NOTE This parameter is available only when AC Volt Mode is Percentage Mode and AC Model is 3-Phase 3-Wire.

Main Line UV Thres. NOTE This parameter is available only when AC Volt Mode is Percentage Mode and AC Model is 3-Phase 3-Wire.

Main Phase OV Thres. NOTE This parameter is displayed only when AC Volt Mode is Voltage Mode and AC Model is 1 Phase, 2-Phase 2-Wire or 3-Phase 4-Wire.

Main Phase UV Thres. NOTE This parameter is displayed

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Default Value

Value Range

-

-

220 V

60 to 300

-

-

130%

110 to 200

-

-

80%

1 to 90

only when AC Volt Mode is Voltage Mode and AC Model is 1 Phase, 2-Phase 2-Wire or 3-Phase 4-Wire.

Rated AC Volt NOTE This parameter is displayed only when AC Volt Mode is Percentage Mode and AC Model is 1 Phase, 2-Phase 2-Wire or 3-Phase 4-Wire.

Main Phase OV Thres. NOTE This parameter is displayed only when AC Volt Mode is Percentage Mode and AC Model is 1 Phase, 2-Phase 2-Wire or 3-Phase 4-Wire.

Main Phase UV Thres. NOTE This parameter is displayed only when AC Volt Mode is

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A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

AC High Freq Thres.

-

-

66Hz

40 to 70

AC Low Freq Thres.

-

-

45Hz

40 to70

Power Limit Enb

-

-

No

Yes, No

Mains Maximum Power

-

-

5000.0 kW

2.0 to 5000.0

-

-

100.0%

0.0~100.0

-

-

100.0%

10.0 to 150.0

-

-

95.0%

90.0 to 98.0

Percentage Mode and AC Model is 1 Phase, 2-Phase 2-Wire or 3-Phase 4-Wire.

NOTE This parameter is displayed only when Power Limit Enb is set to Enable.

Power Limitation Rated NOTE This parameter is displayed only when Power Limit Enb is set to Enable.

Imbalance Ratio NOTE This parameter is displayed only when Power Limit Enb is set to Enable.

PSU Conv Eff

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Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

UVT Point

-

-

39%

39 to 100

OVT Point

-

-

140%

100 to 159

Genset Group

DOD to Start

-

60%

5 to 90

NOTE This parameter is displayed only when Power Limit Enb is set to Enable.

Genset

NOTE  The DG is started when the battery DOD reaches the value of this parameter. This ensures that the battery capacity stays above the preset DOD, thereby ensuring the battery life and backup time. 

Min Chg Time

-

0 min

The voltage when batteries discharge to the DOD varies with the environment and battery conditions.

0 to 2880 NOTE Minimum DG runtime.

Max Chg Time

-

1440 min

60 to 2880 NOTE Maximum DG runtime.

On/Off Judge Time

-

4 min

3 to 30 NOTE Minimum interval between DG shutdown and startup. DG ON Judge Time is the prerequisite for DG soft-start. This avoids fast startup and shutdown within a short period, which will affect the DG service life.

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Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

HT Start Enb

-

Disable

Enable, Disable NOTE Indicates whether to enable DG startup upon high temperature.

HT Start Temp

-

45 degC

NOTE This parameter is displayed only when HT Start Enb is set to Enable.

HT Stop Temp

NOTE The DG is started when the onsite ambient temperature exceeds the value of this parameter.

-

29 degC

NOTE This parameter is displayed only when HT Start Enb is set to Enable.

Min HT Runtime

25 to 60 NOTE The DG is shut down when the onsite ambient temperature is below the value of this parameter.

-

480 min

0 to 1440 NOTE Minimum DG runtime after the DG is started upon high temperature.

NOTE This parameter is displayed only when HT Start Enb is set to Enable.

LT Start Enb

30 to 65

-

Disable

Enable, Disable NOTE Indicates whether to enable DG startup upon low temperature.

LT Start Temp

-

5 degC

NOTE This parameter is displayed only when LT Start Enb is set to Enable.

LT Stop Temp

NOTE The DG is started when the onsite ambient temperature is below the value of this parameter.

-

20 degC

NOTE This parameter is displayed only when LT Start Enb is set to Enable.

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-10 to +15

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0 to 25 NOTE The DG is shut down when the onsite ambient temperature exceeds the value of this parameter.

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Default Value

Value Range

Min. LT Runtime

-

480 min

0 to 1440 NOTE Minimum DG runtime after the DG is started upon low temperature.

NOTE This parameter is displayed only when LT Start Enb is set to Enable.

Time to Stop Enabled

-

Disable

Enable, Disable NOTE Indicates whether to enable scheduled DG startup and shutdown. To prevent the disturbance of DG operation, ensure that the DG is used after the battery is fully charged.

Stop Time

-

22:00:00

NOTE This parameter is displayed only when Time to Stop Enabled is set to Enable.

Runtime to Stop

HH:MM:SS NOTE Time for scheduled DG shutdown.

-

360 min

NOTE This parameter is displayed only when Time to Stop Enabled is set to Enable.

0 to 720 NOTE Interval between scheduled DG startup and scheduled DG shutdown. For example, if Runtime Before Timed DG Stop is 6 h and DG Off Time is 22 h, DG On Time is 16:00.

Night Mode End

Enable

Enable, Disable

Night Finish Time

16:00:00

HH:MM:SS

Night DG Start Volt.

45 V

36.0 to 51.0

1 min

1 to 5

Soft Start Time

-

NOTE This parameter is related to the DG startup time and stop time. The DG soft-start time is equal to

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Default Value

Value Range

or greater than the DG startup time. You can adjust the parameter as required.

Disch Time Protect

-

Max Discharge Time

-

Disable

NOTE Indicates whether to enable discharge time protection to prevent excessive battery discharge.

1440 min

0 to 2880 NOTE The DG is started when the battery discharge time exceeds the value of this parameter.

NOTE This parameter is displayed only when Disch Tiem Protect is set to Enable.

TMDS Enabled

Enable, Disable

-

Enable

Enable, Disable NOTE Enables or disables scheduled D.G. maintenance.

TMDS Interval

-

7 Day

NOTE This parameter is displayed only when TMDS Enable is set to Enable.

TMDS Duration

1 to 30 NOTE Indicates the time interval between two adjacent times of scheduled D.G. maintenance.

-

15 min

NOTE This parameter is displayed only when TMDS Enable is set to Enable.

10 to 300 NOTE Indicates the D.G. runtime during each time of scheduled D.G. maintenance.

Start by DI Enabled

-

Enable

Enable, Disable

Preheat Enabled

-

Disable

Enable, Disable NOTE Indicates whether the low-temperature emergency power backup function is started when the preset conditions are met.

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Default Value

Value Range

DOD Diff for Preheat

-

10%

0 to 100 NOTE The DG preheating function is started when the battery DOD reaches the value of this parameter.

NOTE This parameter is displayed only when Preheat Enabled is set to Enable.

Preheat Temp

-

-5 degC

NOTE This parameter is displayed only when Preheat Enabled is set to Enable.

NOTE The DG preheating function is started when the temperature of water in the DG radiator falls below the value of this parameter.

RBC for LTE Enb

-

Temp for LTE

-

Disable

-5 degC

-25 to -5 NOTE The low-temperature emergency power backup function is started when the ambient temperature of the DG falls below the value of this parameter.

Start by Volt Enb

-

Voltage to Start

-

Disable

Enable, Disable NOTE Indicates whether to enable the monitoring unit to start the DG based on battery voltage.

47.5 V

NOTE This parameter is displayed only when Start by Volt Enb is set to Enable.

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Enable, Disable NOTE Indicates whether the low-temperature emergency power backup function is started when the preset conditions are met.

NOTE This parameter is displayed only when RBC for LTE Enb is set to Enable.

Imbalance Rate

-25 to +10

36.0 to 51.0 NOTE The DG is started when the battery voltage reaches the value of this parameter.

-

100.0%

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10.0 to 150.0

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Default Value

Value Range

NOTE Imbalance between the three phases of the DG.

Configuration Mode

-

Active/Standby

Active/Standby, Mutual Backup

Schedule Mode

-

Cycle Mode

Cycle Mode, Tradition Mode, No Control Mode NOTE DG startup/shutdown control logic. 

No Control Mode: The DG startup or shut down is not controlled.



Tradition Mode: The DG is started when the mains power fails and is shut down when the mains power is normal.



Cycle Mode: Execute the DG startup/shutdown control logic in cyclic mode.

Backup Genset Enb

-

Disable

Enable, Disable

HBT Start Enb

-

Disable

Enable, Disable

HBT Start Temp

-

45 degC

30 to 65

-

29 degC

25 to 60

-

480 min

0 to 1440

NOTE This parameter is displayed only when HBT Start Enb is set to Enable.

HBT Stop Temp NOTE This parameter is displayed only when HBT Start Enb is set to Enable.

BMin HT Runtime NOTE

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Fifth-Level Menu

Default Value

Value Range

LBT Start Enb

-

Disable

Enable, Disable

LBT Start Temp

-

5 degC

-10 to +15

-

20 degC

0 to 25

-

480 min

0 to 1440

-

Disable

Enable, Disable

-

Disable

Enable, Disable

-

12.5 kW

1.0 to 5000.0

This parameter is displayed only when HBT Start Enb is set to Enable.

NOTE This parameter is displayed only when LBT Start Enb is set to Enable.

LBT Stop Temp NOTE This parameter is displayed only when LBT Start Enb is set to Enable.

BMin LT Runtime NOTE This parameter is displayed only when LBT Start Enb is set to Enable.

Low Load Stop Enb NOTE This parameter is displayed only when the DG expansion board of V110 or a later version is connected and the Schedule Mode is set to Cycle Mode.

Solar Enb NOTE This parameter is displayed only when the SSU is connected.

Genset n

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Rated Power

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A Parameter Lists

Fifth-Level Menu

Default Value

Value Range

NOTE Rated output power of a single DG.

Power Limit Rate

-

80.0%

0.0 to 100.0

Rated Phase Volt

-

230V

60 to 300

Rated Current

-

22A

1 to 10000

Rated Frequency

-

50Hz

45 to 65

Rated Speed

-

1500 r/min

100 to 4000

Over Voltage

-

120%

110 to 200

Under Voltage

-

80%

0 to 90

Over Freq

-

110%

96 to 150

Under Freq

-

94%

85 to 108

Volt Unbal Rate

-

10%

1 to 200

Curr Unbal Rate

-

70%

1 to 200

Batt Under Volt

-

10.0V

8.0 to 36.0

Overload Rate

-

115%

0 to 200

SC Curr Rate

-

200%

100 to 500

Run Hour for Maint

-

9999h

0 to 10000

Days for Maint

-

500h

0 to 30000

Run Hour lst Maint

-

20h

0 to 1000

Oil Under Level

-

20%

0 to 100

Press Sensor UL

-

0.0 Kpa

0.0 to 100.0

Press Sensor LL

-

-10.0 Kpa

-100.0 to 0.0

AirIn Over Pressure

-

-4.0 Kpa

-100.0 to 100.0

AC Mode

-

3Ph4Wire

Single Phase, D-live Lines, 3Ph4Wire

NOTE Load rate of the DG with optimal fuel consumption.

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Third-Level Menu

Genset n NOTE This parameter is displayed only when a traditional DG is connected.

GPS

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

UV to Trip

-

87%

70 to 100

OV to Trip

-

125%

100 to 140

Manufacturer

-

-

-

Brand

-

-

-

Installation Time

-

2010-01-01

YYYY-MM-DD

Rated Power

-

12.5 kW

1.0 to 5000.0 NOTE Rated output power of a single DG.

Power Limit Rate

-

Rated Phase Volt

-

230V

60 to 300

Rated Frequency

-

50Hz

45 to 65

Over Voltage

-

120%

110 to 200

Under Voltage

-

80%

0 to 90

Over Freq

-

110%

96 to 150

Under Freq

-

94%

85 to 108

Run Hour for Maint

-

9999h

0 to 10000

Days for Maint

-

500h

0 to 30000

AC Mode

-

3Ph4Wire

Single Phase, D-live Lines, 3Ph4Wire

UV to Trip

-

87%

70 to 100

OV to Trip

-

125%

100 to 140

Manufacturer

-

-

-

Brand

-

-

-

Installation Time

-

2010-01-01

YYYY-MM-DD

Longitude

-

-

-

-

Latitude

-

-

-

-

Altitude

-

-

0m

-500 to +10000

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80.0%

0.0 to 100.0 NOTE Load rate of the DG with optimal fuel consumption.

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Third-Level Menu

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

Battery

Basic Parameters

Battery N Connected

-

Yes

Yes, No

Single-String Cap.

-

150 Ah

5 to 10000

Float Charge Voltage

-

53.5 V

42.0 to 58.0

Boost Charge Voltage

-

Charge Limit Coef.

-

NOTE When temperature compensation is effective, the valid voltage range is 51.5–55.5 V.

56.4 V

NOTE Charge voltage at which lead-acid batteries are being charged in equalized mode.

0.15 C10

0.05 to 0.50 NOTE Battery charge current limit

NOTE This parameter is not displayed for the fast charge battery (FCB). The monitoring unit automatically adjusts the parameter based on the battery charging status and the ambient temperature.

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42.0 to 58.0

Intelligent Dormancy

-

Disable

Disable, Enable

Battery Cable Length

-

1m

0 to 100

Batt Cable CS Area

-

35 mm2

1 to 1000

SOC/SOH Calcu Scene

-

Backup Scene

Backup Scene, Cyclic Scene

Attenuation

-

0.80

0.00 to 1.00

NOTE Indicates whether to enable intelligent battery hibernation management.

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Fourth-Level Menu

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Fifth-Level Menu

Default Value

Value Range

Block Voltage

-

2V

2 V, 12 V

TC Coefficient

-

80 mV/degC

0 to 150

Coef

Temp. Comp. Para.

NOTE This parameter is: For 48 V battery string, the amplitude of the battery float charge voltage that needs to be adjusted for each change of 1°C. Set this parameter based on the actual specifications of the battery. For example, if the temperature compensation coefficient of each 2 V battery is 3.33 mV/degC and each 48 V battery string comprises 24 2 V batteries, then set this parameter to 80 mV/degC, which is calculated as follows: 3.33 x 24 = 80.

BLVD Parameters

Nominal Temperature

-

25 degC

5 to 45

TC Upper Thres.

-

45 degC

40 to 45

TC Lower Thres.

-

5 degC

0 to 25

BLVD General Discon.

-

Enable

Enable, Disable

BLVD Disconnect Mode

-

Voltage Mode

Voltage Mode, Capacity Mode, Time Mode

NOTE This default value varies in accordance with the battery performance. 35 degC is set by default for the TCBs.

NOTE This parameter is displayed only when BLVD General Discon. is set to Enable.

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A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

BLVD LVD Voltage

-

43.2 V

36.0 to 56.0 NOTE If the battery voltage is below the value of this parameter, the BLVD route is disconnected.

NOTE This parameter is displayed only when BLVD General Discon. is set to Enable.

BLVD Con. Volt.

The value of BLVD Voltage must be lower than the value of BLVD Connection Voltage.

-

51.5 V

NOTE If the system voltage exceeds the value of this parameter, the BLVD route is connected.

NOTE This parameter is displayed only when BLVD General Discon. is set to Enable.

BLVD Low Capacity

37.0 to 58.0

The value of BLVD Connection Voltage must be higher than the value of BLVD Voltage.

-

5%

0 to 99

-

480min

5 to 1000

-

60s

3 to 90

-

Reduce DC Voltage

Reduce DC Voltage, Disable, Disconnect Battery

NOTE This parameter is displayed when BLVD Disconnect Mode is set to Capacity Mode.

BLVD Time NOTE This parameter is displayed when BLVD Disconnect Mode is set to Time Mode.

BLVD Delay Time NOTE This parameter is displayed only when BLVD General Discon. is set to Enable.

Temp. Prot. Para.

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Very HT Prot. Mode

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Charge Parameters

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

Very HT Prot. Volt.

-

51.5V

42.0 to 53.0

HT Alarm Thres.

-

50 degC

25 to 80

Very HT Alarm Thres.

-

LT Alarm Thres.

-

-10 degC

-20 to +20

Very LT Alarm Thres.

-

-20 degC

-20 to +20

Auto. BC Enable

-

Enable

Enable, Disable

NOTE This default value varies in accordance with the battery performance. 55 degC is set by default for the TCB.

53 degC

25 to 80

NOTE This default value varies in accordance with the battery performance. 58degC is set by default for the TCB.

NOTE Indicates whether to enable automatic equalized charging.

FC-BC Cur. Coef.

-

0.05 C10

0.01 to 0.25

-

30 min

2 to 1440

NOTE This parameter is displayed only when Auto. BC Enable is set to Enable.

FC-BC Cur. Duration NOTE This parameter is displayed only when Auto. BC Enable is set to Enable.

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Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

FC-BC Cap. Percent

-

70%

50 to 100

Timed BC Enabled

-

Enable

Enable, Disable

Timed BC Inteval

-

30 Day

1 to 365

-

9h

1 to 24

BC-FC Cur. Coef.

-

0.01 C10

0.01 to 0.25

BC-FC Cur. Duration

-

30 min

2 to 540

BC Max Duration

-

18 h

5 to 48

NOTE This parameter is displayed only when Auto. BC Enable is set to Enable.

NOTE Indicates whether to enable scheduled equalized charging.

NOTE This parameter is displayed only when Timed BC Enabled is set to Enable.

Max Timed BC Duration NOTE This parameter is displayed only when Timed BC Enabled is set to Enable.

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NOTE If the duration within which the battery charge current is lower than Equalized to Float Charge Current Coefficient exceeds the value of Equalized to Float Charge Current Duration, batteries automatically enter float charging.

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NOTE If the equalized charging duration exceeds the

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Default Value

Value Range

value of this parameter, batteries automatically enter float charging.

Mains Reco BC En.

-

AC Fail EC Duration

-

Disable

Disable, Enable NOTE Indicates whether to perform equalized charging after the AC power is restored.

10 min

0 to 30 NOTE If the AC power failure duration exceeds the value of this parameter, batteries automatically enter equalized charging after the AC power is restored.

NOTE This parameter is displayed only when Mains Recovery EC En is set to Enable.

Fast Charge Coef.

-

0.40 C10

0.25 to 0.50

Load Temp. Limit En.

-

Disable

Disable, Enable

-

Disable

Disable, Enable

AC Fail Test Enable

-

Disable

Disable, Enable

Time Test Mode

-

NOTE This parameter is displayed only in the temperature control scenario.

Batt. Temp. Limit En. NOTE This parameter is displayed only in the temperature control scenario.

Standard Test Para.

NOTE Indicates whether the standard battery test is allowed if an AC power outage occurs.

Disable

Disable, Scheduled Test, Planned Test NOTE The mode in which the monitoring unit starts an automatic test on schedule or as planned.

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Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

Sche. Test St. Time

-

21:00:00

HH:MM:SS NOTE Time when a scheduled test starts.

NOTE This parameter is displayed only when Time Test Mode is set to Scheduled Test.

Sche. Test Period

-

90 Day

NOTE Interval for starting a scheduled test.

NOTE This parameter is displayed only when Time Test Mode is set to Scheduled Test.

Annual Battery Tests

-

0

0 to 6 NOTE Number of planned tests within a year.

NOTE This parameter is displayed only when Time Test Mode is set to Planned Test.

Pre-BC Enable

2 to 999

-

Enable

Disable, Enable NOTE Indicates whether the monitoring unit allows charging batteries in equalized mode before a standard battery test starts.

Constant Cur. Test

-

Constant Test Cur.

-

Disable

NOTE Indicates whether batteries are allowed to discharge at a constant current in a standard battery test.

9999 A

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1 to 9999 NOTE Batteries discharge at this current in a standard battery test.

NOTE This parameter is displayed only when Constant Cur. Test is set to Enable.

Test End

Disable, Enable

-

46.0 V

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Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Voltage

Value Range

NOTE If the battery voltage is below the value of this parameter, the battery test ends.

Test End Capacity

-

Test End Time

-

20%

0 to 99 NOTE If the battery capacity is below the value of this parameter, the battery test ends.

480 min

1 to 6000 NOTE If the standard battery test duration reaches the value of this parameter, the battery test ends.

Short Test Para.

Test End Temperature

-

5degC

-5 to +15

Short Test Enable

-

Short Test Period

-

30 Day

1 to 360

-

5 min

1 to 240

NOTE If the battery temperature is lower than Test End Temperature, the battery test ends.

Disable

Disable, Enable NOTE Indicates whether to allow the monitoring unit to perform short tests automatically.

NOTE This parameter is displayed only when Short Test Enable is set to Enable.

Short Test Time NOTE This parameter is displayed only when Short Test Enable is set to Enable.

Short Test End Volt.

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NOTE If the test duration exceeds the value of this parameter, the monitoring unit exits from the short test.

-

45.0 V

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Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

If the battery voltage is below the value of this parameter, the monitoring unit exits from the short test.

NOTE This parameter is displayed only when Short Test Enable is set to Enable.

Alarm Parameters

Value Range

Overcur. Alm. Thres.

-

0.25 C10

0.05 to 1.00

Low Cap. Alm. Thres.

-

30%

0 to 90

Volt Unbalance Mode

-

Percentage Mode

Percentage Mode, Voltage Mode

Volt. Imb. Thres

-

10%

5 to 30

Cur. Imb. Thres.

-

0.05 C10

0.00 to 1.00

Volt. Imb. Thres

-

2.0 V

0.1 to 3.0

Batt Incorrect Curr.

-

5.0 A

1.0 to 100.0

Batt Incorrect Time

-

5 min

1 to 60

Battery Install Time

-

2010-01-01

YYYY-MM-DD

Product Time

-

2010-01-01

YYYY-MM-DD

Volt. Detect Mode

-

Middle Point Volt.

Middle Point Volt., Cell Volt. None

NOTE This parameter is displayed only when Volt Unbalance Mode is set to Percentage Mode.

NOTE This parameter is displayed only when Volt Unbalance Mode is set to Voltage Mode.

Other Parameters

NOTE When connecting a signal cable for monitoring middle point voltages, select Middle Point Volt.. When

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Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Value Range

connecting a signal cable for monitoring battery voltages, select Cell Volt..

Power Backup Mode

-

Time Mode

Time Mode, Capacity Mode NOTE Specifies a mode for detecting power backup capability.

LLVD Backup Time

-

180 min



Time Mode: based on backup time.



Capacity Mode: based on backup capacity

0 to 9999 NOTE Sets the expected duration from when batteries start to supply power to when loads are disconnected.

NOTE This parameter is displayed only when Power Backup Mode is set to Time Mode.

For example, if you require that loads be powered for 200 minutes since batteries start to supply power, set this parameter to 200Min. If the actual power supply duration is shorter than the expected duration, the monitoring unit generates a Backup Warning alarm.

BLVD Backup Time

-

480 min

NOTE Sets the expected duration from when batteries start to supply power to when batteries are disconnected.

NOTE This parameter is displayed only when Power Backup Mode is set to Time Mode.

LLVD Backup

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0 to 9999

If the actual power supply duration is shorter than the expected duration, the monitoring unit generates a Backup Warning alarm.

-

75%

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Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Value Range

-

95%

5 to 100

Battery Cable Length

-

1m

0 to 100

Battery Cable CS Area

-

35 mm2

1 to 1000

SOC/SOH Calcu Scene

-

Backup Scene

Cyclic Scene, Backup Scene

Attenuation Coef

-

0.80

0.00 to 1.00

Block Voltage

-

2V

2, 12

Genset Qty

-

0

0 to 2

Tank Qty

-

1

1 to 4

A/C Off for Small DG

-

Disable

Disable, Enable

TCB auto-sensing

-

Yes

Yes, No

Hybrid Scenario

-

No

Yes, No

AC Supply Priority

-

Mains Supply Priority

Mains Supply Priority, DG Supply Priority

Battery Vendor

-

Other

AGISSON, Coslight, Dengta, Eltek, EnerSys, Exide,

Capacity NOTE This parameter is displayed only when Power Backup Mode is set to Capacity Mode.

BLVD Backup Capacity NOTE This parameter is displayed only when Power Backup Mode is set to Capacity Mode.

Setup Parameter

Basic Parameters

NOTE This parameter is related to the system type.

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Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Value Range

LEOCH, Narada, NorthStar, Shoto, Other Battery Mode

-

12 V VRLA

DCB-A, DCB-A1, DCB-B, DCB-Y, ESU-A, ESM-A, ESM-BX, FCB-A, FCB-B, SCB-A, SCB-A1, TCB-A, TCB-B, TCB-C, 12V VRLA, 2V VRLA, FLOOD, 6-GFM-X, 6-GFMF, Rebak-F4899T, 12TD-F, SBS-F, M12V-FT, LPF12-H, 6-GFM-F, 12NDF, Blue, Red, 6-FMX, 6-XFMJ, GFM, BBS 4840Z NOTE This parameter is related to battery manufacturers.

Load Elec Stat Src

-

No

No, DCDB, DC Ammeter, EFUSE, Shunt

Include Public Load

-

No

Yes, No

-

1

1 to 28

NOTE This parameter is displayed only when Load Elec Stat Src is set to DCDB, DC Ammeter, EFUSE or Shunt.

Load Elec Stat Star NOTE This parameter is displayed only when Load Elec Stat Src is set to DCDB, DC Ammeter, EFUSE or Shunt.

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SecondLevel Menu

Third-Level Menu

Mobile Genset Para

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

Enable Sign Verify

-

Enable

Enable, Disable

TLS 1.0

-

Disable

Enable, Disable

Report Hist. Alarms

-

Disable

Enable, Disable

Non-smart ATS Qty

-

0

0 to 2

Back Network Port Enable

-

Yes

Yes, No

Mobile DG Auto-Sense

-

Disable

Enable, Disable

Mobile DG Chg. Batt

-

Enable

Enable, Disable

-

50.0 Hz

40.0 to 70.0

-

0.5 Hz

0.1 to 5.0

AC SPD

-

Yes

Yes, No

DC SPD

-

Yes

Yes, No

Door Sensor

-

Yes

Yes, No

Water Sensor

-

No

Yes, No

Smoke Sensor

-

No

Yes, No

Ambient Temp.

-

No

Yes, No

NOTE This parameter is available only when Mobile DG Auto-Sense is Enable and Genset Qty is 0.

Read Mains Freq NOTE This parameter is displayed only when Mobile DG Auto-Sense is set to Enable.

Mains Freq Fluct Rng NOTE This parameter is displayed only when Mobile DG Auto-Sense is set to Enable.

Sensor Config

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SecondLevel Menu

Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Value Range

Ambient Humi. Sensor

-

No

Yes, No

Temp1 Sensor

-

No

Yes, No

Temp2 Sensor

-

No

Yes, No

Batt. Temp. Sensor 1

-

No

Yes, No

Batt. Temp. Sensor 2

-

No

Yes, No

Vibration Sensor

-

No

DIN1-6, No

Audible Visual Alarm

-

No

ALM1-7, No

IR sensor connected

-

No

DIN1-6, No

Glass Brk Snsr Cnnct

-

No

DIN1-6, No

Water Sensor connect

-

No

DIN1-6, No

Smoke Sensor connect

-

No

DIN1-6, No

Nonintelligent Lock

-

No

Yes, No

No

DIN1-6, No

-

No

ALM1-8, No

-

Yes

Yes, No

Sensor

Door Lock State NOTE This parameter is displayed only when Nonintelligent Lock is set to YES.

Nonintel. Lock ALM NOTE This parameter is displayed only when Nonintelligent Lock is set to YES.

DTS #

DTS Group

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Backup Batt Enable

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SecondLevel Menu

Third-Level Menu

DTSn

DCDB #

DCDB n

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

LeBatt Transfer Mode

-

Discharge apart

Discharge apart, Discharge together

LiBatt Transfer Mode

-

Active/Standby

Active/Standby, Mutual backup

DTS Transfers Limit

-

20

1 to 100

MainBatt Swit. Volt

-

43.2 V

35.0 to 56.0

BackBattN Swit. Volt

-

43.2 V

35.0 to 56.0

MainBatt UV Thres

-

46.0 V

46.0 to 57.0

MainBatt UV HY

-

1.0

1.0 to 5.0

BackBatt UV Thres

-

46.0 V

46.0 to 57.0

BackBatt UV HY

-

1.0

1.0 to 5.0

Basic Parameters

Load Setting Mode

All Branch

All Branch, Single Branch

Load Off Mode

Voltage Mode

Voltage Mode, Time Mode

Load Off Enable

Yes

Yes, No

Yes

Yes, No

No

Yes, No

Load Off Enable

NOTE This parameter is available only when Load Setting Mode is All Branch.

Load N Off Enable NOTE This parameter is available only when Load Setting Mode is Single Branch.

Load TD Enable

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SecondLevel Menu

Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Value Range

No

Yes, No

51.5 V

37.0 to 58.0

51.5 V

37.0 to 58.0

43.2 V

36.0 to 56.0

43.2 V

36.0 to 56.0

NOTE This parameter is available only when Load Setting Mode is All Branch.

Load N TD Enable NOTE This parameter is available only when Load Setting Mode is Single Branch.

Load On/Off Para.

Load On Voltage NOTE This parameter is available only when Load Setting Mode is All Branch.

Load N On Volt NOTE This parameter is available only when Load Setting Mode is Single Branch.

Load Off Voltage NOTE This parameter is available only when Load Setting Mode is All Branch.

Load N Off Volt NOTE This parameter is available only when Load Setting

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SecondLevel Menu

Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Value Range

6000 min

0 to 6000

6000 min

0 to 6000

HH:MM:SS

HH:MM:SS

HH:MM:SS

HH:MM:SS

480 min

1 to 1439

Mode is Single Branch.

Load Off Time NOTE This parameter is available only when Load Setting Mode is All Branch and Load Off Mode is Time Mode.

Load N Off Time This parameter is available only when Load Setting Mode is Single Branch and Load Off Mode is Time Mode. Load TD Time NOTE This parameter is available only when Load Setting Mode is All Branch.

Load N TD Time NOTE This parameter is available only when Load Setting Mode is Single Branch.

Load TD Duration NOTE This parameter is available only when Load Setting Mode is All

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Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Value Range

480 min

1 to 1439

Yes

Yes, No

Yes

Yes, No

30 A

3 to 40

30 A

3 to 40

Yes

Yes, No

Branch.

Load N TD Duration NOTE This parameter is available only when Load Setting Mode is Single Branch.

Load Overcur Thres

Load OvCur Prot En NOTE This parameter is available only when Load Setting Mode is All Branch.

Load N OvCur Prot En NOTE This parameter is available only when Load Setting Mode is Single Branch.

Load Br OC Thres. NOTE This parameter is available only when Load Setting Mode is All Branch.

Load N OC Thres. NOTE This parameter is available only when Load Setting Mode is Single Branch.

Load OvTmp Para.

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Load OvTmp Proc En

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Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Value Range

Yes

Yes, No

No

No, User 1 to User 6

No

No, User 1 to User 6

No

No, Branch 1 to Branch 6

NOTE This parameter is available only when Load Setting Mode is All Branch.

Load N OvTmp Proc En NOTE This parameter is available only when Load Setting Mode is Single Branch.

Consumption Config

Load User Config NOTE This parameter is available only when Load Setting Mode is All Branch.

Load N to User Config NOTE This parameter is available only when Load Setting Mode is Single Branch.

Load N to Branch NOTE This parameter is available only when Load Setting Mode is Single Branch.

Low Cap Li-ion Batt #

Basic Parameters

NOTE This

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Rated Capacity

-

40 Ah

1 to 300

Charging Voltage

-

54.0 V

53.5 to 56.5

BLVD Enable

-

Yes

Yes, No

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SecondLevel Menu paramete r is displayed only when Battery Model is set to BBS 4840Z.

Third-Level Menu

BLVD Parameters

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

Battery N Connected

-

Yes

Yes, No

BLVD Mode

-

Voltage Mode

Voltage Mode, Time Mode

BLVD Time

-

480 min

5 to 1000

BLVD Capacity

-

5%

0 to 100

BLVD Voltage

-

43.2 V

35.0 to 47.8

BLVD Con. Volt.

-

51.5 V

37.0 to 53.0

HT Alarm Thres.

-

50 degC

25 to 80

LT Alarm Thres.

-

-10 degC

-35 to +20

Installation Time

-

2010-01-01

YYYY-MM-DD

Shunt Max. Volt.

-

75 mV

5 to 150

Shunt Max. Cur.

-

300 A

5 to 3000

Battery N Connected

-

No

Yes, No

Batt Atten Coef

-

0.80

0.00 to 1.00

Discharge Mode

-

Constant Volt Dischg

Auto, Constant Volt Dischg

Priority Charger

-

Enable

Enable, Disabale

iLock Enable

-

Lock Disable

Lock Enable, Lock Disable

-

Host Manage

Host Manage, Auto Manage

NOTE This parameter is displayed only when BLVD Mode is set to Time Mode.

Alarm Parameters

Other Parameters

Li Battery #

A Parameter Lists

Basic Parameters

NOTE  This para meter is displ ayed only when Batte ry Mod el is set to ESM -A, ESU -A or ESM -BX.

NOTE This parameter is displayed only when the battery anti-theft function is supported.

BMU Manage Model NOTE

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SecondLevel Menu 

Third-Level Menu

Ther e are differ ences in the defau lt para meter s of the batter y when the Batte ry Mod el or Batte ry Capa city is differ ent.

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Value Range

-

72

8 to 720

Battery Group Vendor

-

-

-

BMU Quantity

-

0

0 to 32

Cycle Mode

-

Li-Ion primary

Li-Ion And Acid cycle, Li-Ion primary, Li-Ion standby

-

1.00

0.80 to 1.00

-

52.1V

42.0 to 58.0

Chg Curr Limit Coef

-

0.15 C10

0.05 to 1.00

Load Temp.Limit En.

-

Disable

Disable, Enable

This parameter is displayed only when the battery anti-theft function is supported.

iLock Verify Timeout NOTE This parameter is displayed only when the battery anti-theft function is supported.

NOTE This parameter only displayed when iMix Enabled is set to Enable.

Charge Parameters

Charge Efficiency NOTE This parameter only displayed when Hybrid Scenario is set to No.

EC Voltage NOTE This parameter only displayed when Hybrid Scenario is set to No.

NOTE This parameter is displayed only in

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SecondLevel Menu

Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Value Range

-

Disable

Disable, Enable

HT Alarm Thres.

-

50 degC

35 to 70

LT Alarm Thres.

-

0

-50 to 10

Low Cap. Alm. Thres.

-

30%

0 to 90

Image Quality

-

Excellent

Average, Fair, Good, Excellent

the temperature control scenario.

Batt. Temp.Limit En. NOTE This parameter is displayed only in the temperature control scenario.

Alarm Parameters

Camera # NOTE Applies when the serial port camera is connecte d.

Camea # NOTE Applies when the IP camera is connecte d.

iBOX

Camera Equip n

NOTE Image definition.

Image Format

-

640 x 480

160 x 120, 320 x 240, 640 x 480

Snapshot Interval

-

20s

1 to 600

Number After Alarm

-

Cabinet Name

-

-

-

Forbid Camera

-

No

Yes, No

Camera Equip n

Capture Interval

-

40s

20 to 60

Forbid Camera

-

No

Yes, No

iBOX Equip n

iBAT Number Per Cell

-

1

1 to 8

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NOTE Interval for taking pictures.

5 Pcs

1 to 30 NOTE Sets how many pictures taken after alarm generation will be saved.

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Efuse Group #

Third-Level Menu

EFUSE n

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

iBAT Volt. Rec. En.

-

No

No, Yes

iBAT Res. Rec. En.

-

No

No, Yes

iBAT Temp. Rec. En.

-

No

No, Yes

iBAT SOH Rec. En.

-

No

No, Yes

Basic Parameters

Load Off Mode

Voltage Mode

Time Mode, Voltage Mode

On/Off Setting

Single

All, Single

Load Overcur Setting

Single

All, Single

Load n Off Enable

Yes

Yes, No

No

Yes, No

No

Yes, No

No

Yes, No

NOTE This parameter is displayed only when On/Off Setting is Single.

Load Off Enable NOTE This parameter is displayed only when On/Off Setting is ALL.

Load n TD Enable NOTE This parameter is displayed only when On/Off Setting is Single.

Load TD Enable NOTE This parameter is displayed only when On/Off Setting

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SecondLevel Menu

Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Value Range

43.2 V

35.0 to 56.0

43.2 V

35.0 to 56.0

51.5 V

37.0 to 58.0

51.5 V

37.0 to 58.0

6000 min

0 to 6000

6000 min

0 to 6000

is ALL.

Load Off Voltage

Load n Off Volt NOTE This parameter is displayed only when On/Off Setting is Single.

Load Off Voltage NOTE This parameter is displayed only when On/Off Setting is All.

Load On Voltage

Load n On Volt NOTE This parameter is displayed only when On/Off Setting is Single.

Load On Voltage NOTE This parameter is displayed only when On/Off Setting is All.

Load Off Time NOTE This parameter is displayed only when Load Off Mode is Time Mode.

Load n Off Time NOTE This parameter is displayed only when On/Off Setting is Single.

Load Off Time NOTE This parameter is displayed only when On/Off Setting is All.

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SecondLevel Menu

Third-Level Menu

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

Load Time Down

Load TD Time

-

-

480 min

1 to 1439

-

-

480 min

1 to 1439

15.0 A

0.5 to 20.0

15.0 A

0.5 to 20.0

NOTE This parameter is displayed only when Load TD Enable is Yes.

NOTE This parameter is displayed only when On/Off Setting is All.

Load TD Duration NOTE This parameter is displayed only when On/Off Setting is All.

Load n TD Time NOTE This parameter is displayed only when On/Off Setting is Single.

Load n TD Duration NOTE This parameter is displayed only when On/Off Setting is Single.

Load Overcur Thres

Load n Overcur Thres NOTE This parameter is displayed only when Load Overcur. Setting is Single.

Load Overcur. Thres. NOTE  This parameter is displayed only when Load Overcur.

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SecondLevel Menu

Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Value Range

All Loads to User

None

None, User 1-6

Load n to User

None

Setting is All. 

Consumption Config

When the actual current exceeds the 1.2 times of the load overcurrent threshold, the EFUSE automatical ly enables or disables the output. The appropriate current can be manually resumed only after the overcurrent fault is rectified.

NOTE User SNs must be consecutive; In a multi-LLVD scenario, use SNs must map to LLVD SNs.

NOTE This parameter is displayed only when Load Elec Stat Src is EFUSE.

Load n to Branch

None, User 1-6 NOTE User SNs must be consecutive.

None

None, Branch1-10

58.0 V

58.0 to 60.0

NOTE This parameter is displayed only when Load Elec Stat Src is No EFUSE.

Other Parameters

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Input OV Thres

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Temp. Control

Third-Level Menu

Temp. Control Group

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Value Range

Input UV Thres

42.0 V

38.0 to 45.0

Set Cabinet Name

-

-

Indoor Vent TS

-

Yes

Yes, No

Outdoor Amb. TS

-

No

Yes, No

TC Mode

-

Standard Mode

Standard mode, Mute mode

-

Disable

Enable. Disable

-

Disable

Enable. Disable

-

Disable

Enable. Disable

In_Recycle Work Temp

-

35 degC

-20 to 50

In_Recycle Stop Temp

-

30 degC

-20 to 50

Ex_Recycle Work Temp

-

35 degC

-20 to 50

Ex_Recycle Stop Temp

-

30 degC

-20 to 50

NOTE This parameter is displayed only in the temperature control scenario.

Backup Mode enable NOTE This parameter is displayed only in the temperature control scenario.

A/C Config. Mode En NOTE This parameter is displayed only in the temperature control scenario.

Low-Temp Mode Enable NOTE This parameter is displayed only in the temperature control scenario.

Fan Group

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SecondLevel Menu

Third-Level Menu

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

Dr. Alm. Fan Stp. En

-

Disable

Enable. Disable

Heater Start Temp.

-

5 degC

-10 to 5

Heater Stop Temp.

-

15 degC

5 to 15

AC Rated Frequency

-

-

50

50, 60

Detected Object

-

-

AC Total Input

AC Total Input, None, AC Other Equipment, AC TC Equipment, AC Main Equipment

AC OV Thres.

-

-

280V

60~300

AC UV Thres.

-

-

180V

60~300

AC Source

-

-

Other

Other, DG, Mains

ATS Group

AC Supply Priority

-

DG Supply Priority

DG Supply Priority, Mains Supply Priority

ATS 1

Work Scenario

-

Mains+DG

Mains+DG, DG1+DG2

Mains UVT

-

39%

39 to 100

Mains OVT

-

140%

100 to 159

DG UVT

-

87%

70 to 100

DG OVT

-

125%

100 to 140

Amb. HT Thres

-

55 degC

25 to 80

Amb. LT Thres

-

-20 degC

-20 to +20

Amb. Ultra HT Thres.

-

70 degC

25 to 80

Amb. HH Thres.

-

95%

0 to 100

Amb. LH Thres.

-

5%

0 to 100

Env HT Count Point

-

55 degC

25 to 80

Env LT Count Point

-

-20 degC

-20 to +20

Heater Device

AIM n

ATS

Sensor

A Parameter Lists

Humiture Sensor #

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SecondLevel Menu

MIMO Group #

Other Device Config

A Parameter Lists

Third-Level Menu

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

Water Sensor #

Water Alarm Cond

-

Close

Close, Open

Door Sensor #

Door Alarm Cond

-

Open

Close, Open

Smoke Sensor #

Smoke Alarm Cond

-

Close

Close, Open

Glass Brk Snsr #

Glass Brk Snsr Cond

-

Close

Close, Open

IR Sensor #

IR Sensor Cond

-

Close

Close, Open

Vibration Sensor #

Vibration Sensor Cond

-

Close

Close, Open

12DC Out. Volt.

-

-

12.0 V

12.0 to 13.2

24AC Out. Volt.

-

-

24.0 V

24.0 to 26.3

iRELAY 1

Blink Duration

-

30s

5 to 120

RF-A Max Tran. P.

-

8 dBm

0 to 15

Duration to Connect

-

720 min

1 to 1440

iFUEL-RS48 5

-

-

-

-

iDATA n

Blink Duration

-

30s

5 to 120

DI n Alm. Cond.

-

Closed

Open, Closed

PORT n – DI n Alm Cond

-

Closed

Open, Closed

Node A Max Power

-

8 dBm

0 to 15

Node B Max Power

-

6 dBm

0 to 15

Port n Config

-

DI_MODE

DI_MODE, IR _MODE, Smoke_MODE, Voltage_MODE, NTC_MODE

I/O n Config

-

INPUT_MODE

INPUT_MODE, OUTPUT_MODE

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Third-Level Menu

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

DO n Alarm Action

-

Closed

Opened, Closed

Hall n Type

-

100A

100A, 200A

PORT n-NTC

-

TF820E10J

TF820E10J, NTSA0103FZD19A

48V Side DC Input Type

-

DC Power

DC Power, Li Batt, Normal Lead Acid

AC Mode

-

Three Phases

Single Phase, D-Live Lines

Dynamic Adjust Voltage Enabled

-

Disable

Enable, Disable

AC Overvolt. Thres.

-

280 V

60-305

AC Undervolt. Thres.

-

180 V

60-305

48V DC Overvolt. Thres.

-

58.0 V

53.0-60.0

48V DC Undervolt. Thres.

-

45.0 V

36.0-57.0

47V DC Overvolt. Thres.

-

73.0 V

58.0-75.0

47V DC Undervolt. Thres.

-

53.0 V

50.0~59.0

Time Set

-

2000-01-01 00:00:00

-

LLVD n Enabled

-

Enable

Enable, Disable

LLVD n Mode

-

Voltage Mode

Voltage Mode, Time

NOTE This parameter is displayed only when I/O n Config is set to OUTPUT_MO DE.

NOTE This parameter is displayed only when PORT is set to NTC.

5G Blade Power n

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Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Voltage

NOTE This parameter is displayed only when LLVD n Enabled is set to Enable.

LLVD n Voltage

Value Range

-

44.0 V

36.0~56.0

-

51.5V

37.0~58.0

48V Disconnect Voltage

-

45.0 V

35.0~56.0

48V Port Set Volt

-

53.5 V

48.0~55.0

AC Peak Shaving Enabled

-

Disable

Enable, Disable

AC Capacity

-

1000 kW

1-10000

-

1000 A

1-10000

-

0.8

0.1-1.0

NOTE This parameter is displayed only when LLVD n Enabled is set to Enable.

LLVD n Recon Volt NOTE This parameter is displayed only when LLVD n Enabled is set to Enable.

NOTE This parameter is displayed only when AC Peak Shaving Enabled is set to Enable.

Breaker Rated Curr NOTE This parameter is displayed only when AC Peak Shaving Enabled is set to Enable.

Derating Coef NOTE This parameter is

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Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Value Range

-

220 V

60-300

Power Unit n Output Voltage

-

57.0 V

57.0-60.0

Duration to Connect

-

720 min

1 to 1440

RF-A Max Tran. P

-

8 dBm

0 to 15

RF-B Max Tran. P

-

6 dBm

0 to 15

WAN Port Settings

-

No

No, GE 2, GE 1

Mains Detect Enable

-

Disable

Enable, Disable

Fuel Level UL

-

300.0 cm

0.0 to 1000.0

Fuel Level LL

-

0.0 cm

0.0 to 1000.0

AI 1 Insert Sensor

-

Tank 1 Oil Level

None, Tank 1 Oil Level, Tank 2 Oil Level, Dg1 AirIn Press, Dg2 AirIn Press

AI 2 Insert Sensor

-

Tank 2 Oil Level

None, Tank 1 Oil Level, Tank 2 Oil Level, Dg1 AirIn Press, Dg2 AirIn Press

Fuel Level UL AI1

-

300.0 cm

0.0-1000.0

Fuel Level LL AI1

-

0.0 cm

0.0-1000.0

Fuel Level UL AI2

-

300.0 cm

0.0-1000.0

displayed only when AC Peak Shaving Enabled is set to Enable.

Rated Phase Volt NOTE This parameter is displayed only when AC Peak Shaving Enabled is set to Enable.

WIM n

DG Controller n

DG Comm Ex Board

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Third-Level Menu

Fuel Tank n

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

Fuel Level LL AI2

-

0.0 cm

0.0-1000.0

Tank Type

-

Cuboid

Horizontal Cylinder, Vertical Cylinder, Irregular, Cuboid

Tank Length

-

1.50 m

0.50 to 20.00 NOTE This parameter is displayed only when Tank Type is set to Horizontal Cylinder.

Cyl Tank Diameter

-

Cuboid Tank Lenght

-

Cuboid Tank Width

-

Tank Height

-

1.13 m

0.00 to 4.00 NOTE This parameter is displayed only when Tank Type is set to Vertical Cylinder or Horizontal Cylinder.

1.00 m

0.00 to 10.00 NOTE This parameter is displayed only when Tank Type is set to Cuboid.

1.00 m

0.00 to 10.00 NOTE This parameter is displayed only when Tank Type is set to Cuboid.

1.50 m

0.0 to 10.0 NOTE This parameter is displayed only when Tank Type is set to Vertical Cylinder or Cuboid.

Rated Capacity

-

1500.00 L

0.00 to 6000.00 NOTE This parameter is displayed only when Tank Type is set to Irregular.

Under Fuel Level

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Third-Level Menu

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

Refuel Level

-

20.0%

0.0 to 50.0

Abnor Change Thres

-

3.0 cm

1.0 to 1000.0

Abnor Change Dur

-

10.0 min

1.0 to 60.0

Level Filter Time

-

30 min

1 to 1440

Calibration Num

-

10

1 to 100 NOTE This parameter is displayed only when Tank Type is set to Irregular.

Height H n

Volum V n

EPS-D Interface Brd n

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-

0.00 cm

0.00 to 200.00

NOTE Set this parameter to H0. Set other parameters based on site requirements.

NOTE This parameter is displayed only when Tank Type is set to Irregular.

0.00 L

0.00 to 6000.00

NOTE Set this parameter to H0. Set other parameters based on site requirements.

NOTE This parameter is displayed only when Tank Type is set to Irregular.

Level Filter Thres

-

3.00 cm

0.00 to 10.00

Refuel Calc Enb

-

Yes

Yes, No

Fuel Sensor Type

-

Current type

Current type, Smart Type, Resistance type

Oil Pump Runtime

-

4s

1 to 8

OilClean Period

-

2h

1 to 50

Auto Add Oil

-

Yes

Yes, No

Fuel Level UL

-

25.7 cm

0.0 to 1000.0

Fuel Level LL

-

2.7 cm

0.0 to 200.0

Fuel Tank Capacity

-

300.0 L

0.0 to 600.0

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Alarm Parameter s

Third-Level Menu

DI Dry Contact Para.

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

Tank CSA

-

1.20 m2

0.00 to 10.00

Heater Alarm Asso.

-

DIN5

DIN1-6, None

-

None

None, Heater Fault

-

None

None, LLVD Forcibly Connection, TCUA Alarm, TEC Alarm

NOTE This parameter varies with the system type.

DIN5 Reuse NOTE This parameter varies with the system type.

DIN6 Reuse NOTE This parameter varies with the system type.

DO Dry Contact Para.

ALM n Alarm Action

-

Close

Close, Open

Alarm Config

Site Unit

-

-

-

UIM

-

-

-

Controller

-

-

-

Door Sensor

-

-

-

Smoke Sensor

-

-

-

Other Virtual Equip

-

-

-

Rectifier

-

-

-

Rectifier Group

-

-

-

Battery Group

-

-

-

Battery String

-

-

-

Temp. Control Group

-

-

-

Fan Group

-

-

-

Heater Device

-

-

-

Comm. Ex. Board Group

-

-

-

Comm. Ex.

-

-

-

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Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Value Range

Mains

-

-

-

Genset Summary

-

-

-

Genset

-

-

-

EFUSE

-

-

-

EFuse Group

-

-

-

AIM

-

-

-

ATS Group

-

-

-

ATS

-

-

-

GPS

-

-

-

Nonintelligent Lock

-

-

-

DG

-

-

-

5G Blade Power

-

-

-

5G Blade Power Group

-

-

-

DG Comm Ex Board

-

-

-

AC Distribution

-

-

-

DC Output Distribution

-

-

-

DC Power

-

-

-

Fuel Tank

-

-

-

SIEE Data

-

-

-

Cri. Alm. Asso. DO

-

No

No, ALM1-ALM8

Major Alm. Asso. DO

-

No

No, ALM1-ALM8

Minor Alm. Asso. DO

-

No

No, ALM1-ALM8

Warn. Alm. Asso. DO

-

No

No, ALM1-ALM8

Board

Controller

Alarm Level DO Para.

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Comm. Parameter s

A Parameter Lists

Third-Level Menu

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

Clear ALM Asso.

Clear ALM n Asso.

-

Yes

Yes

Clear DI Asso.

Clear DIN n Asso.

-

Yes

Yes

Network Parameters

IP Type

-

IPv4

IPv4, IPv6

IP Address

-

192.168.0.10

-

Subnet Mask

-

255.255.255.0

-

Default Gateway

-

192.168.0.1

-

IPv4 DSCP

-

46

0 to 63

VLAN Enable

-

No

Yes, No

VLAN ID

-

0

0 to 4094

VLAN Priority

-

5

0 to 7

NetEco Primary IP

-

192.168.0.10

-

NetEco Backup IP

-

192.168.0.10

-

NetEco Port Number

-

31220

1 to 65535

FAE Tel Number 1

-

-

:, _, 0 to 9, a to z, A to Z

FAE Tel Number 2

-

-

:, _, 0 to 9, a to z, A to Z

FAE Tel Number 3

-

-

:, _, 0 to 9, a to z, A to Z

FAE Tel Number 4

-

-

:, _, 0 to 9, a to z, A to Z

FAE Tel Number 5

-

-

:, _, 0 to 9, a to z, A to Z

Northbound

Port Mode

Manual

Manual, Automatic

Protocol Type

Modbus Protocol

M/S Protocol, YDN1363 Protocol, Modbus Protocol

Serial Port

NOTE This parameter is displayed only when Port Mode is set to Manual.

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A Parameter Lists

Third-Level Menu

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

YDN1363 Protocol

Baud Rate

-

9600

1200, 2400, 4800, 14400, 115200, 9600, 19200

Comm. Address

-

1

1 to 254

Baud Rate

-

9600

1200, 2400, 4800, 14400, 115200, 9600, 19200

Comm. Address

-

33

0 to 254

Baud Rate

-

9600

1200, 2400, 4800, 14400,115200,9600,19 200

Comm. Address

-

3

0 to 31

Carrier Operator

-

Automatic

Automatic, Others

SIMn Acc Point Name

-

-

A maximum of 28 characters, including lowercase English letters (a to z), uppercase English letters (A to Z), digits (0 to 9), and special characters (@_#*-.).

-

-

-

-

-

-

Modbus Protocol

M/S Protocol

Mobile Data

NOTE This parameter is displayed only when Carrier Operator is set to Others.

SIMn Access Point No NOTE This parameter is displayed only when Carrier Operator is set to Others.

SIMn User Name NOTE This parameter is displayed only when Carrier Operator is set to Others.

SIMn User Password NOTE This parameter is displayed only when Carrier Operator is set

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Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

to Others.

Value Range

characters (@_#-.). It is recommended that the password contain at least two types of characters and the length exceed six characters.

WiFi Settings NOTE This paramete r is displayed only when the WIFI is connecte d.

WIFI Enable

-

-

Enable

Enable, Disable

Wifi SSID

-

-

HUAWEI_SITE

A maximum of 31 characters, including lowercase English letters (a to z), uppercase English letters (A to Z), digits (0 to 9), and special characters (@_#-.).

Password

-

-

Changeme

A maximum of 31 characters, including lowercase English letters (a to z), uppercase English letters (A to Z), digits (0 to 9), and special characters (@_#-.). It is recommended that the password contain at least two types of characters and the length exceed eight characters.

Local Parameter s

Language

-

-

English

English, Chinese, Russian, Spanish, Portuguese, French, Italian, German, Turkish, Japanese

Site ID

Site ID

-

-

-

System Type

-

-

-

-

Date and Time

Time Zone

-

UTC +08:00 Beijing

Time zones of all the major cities in the world. For details, see the WebUI.

Date and Time

-

-

-

NTP Enable

-

No

Yes, No

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Third-Level Menu

Fourth-Level Menu

A Parameter Lists

Fifth-Level Menu

Default Value

Value Range

127.0.0.1

-

-

127.0.0.1

-

-

123

1 to 65535

-

1 min

1 to 1440

NTP Primary IP NOTE This parameter is displayed only when NTP Enable is set to YES.

NTP Backup IP NOTE This parameter is displayed only when NTP Enable is set to YES.

NTP Port Number NOTE This parameter is displayed only when NTP Enable is set to YES.

NTP Sync. Tnterval NOTE This parameter is displayed only when NTP Enable is set to YES.

LCD Contrast

Contrast

-

5

0 to 10

Reset Web Password

-

-

-

-

-

-

Yes

Yes

NOTE Only displayed when logged in as an administrator.

Restore Settings

Restore Factory Set.

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A Parameter Lists

A.5 Running Control Table A-5 Running Control menu hierarchy Second-L evel Menu

Third-Level Menu

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

Site Unit

-

-

-

-

-

DC Power

DC Power

Control Mode

-

Automatic

Automatic, Manual, Maintenance

DC Output Distribution

-

-

-

-

Block Alarm

-

-

No

Yes, No

Reset SMU

-

-

Yes

Yes

Switch to IP Net.

-

-

Yes

Yes

Sw. to WirelssNet.

-

-

Yes

Yes

-

-

Yes

Yes

Upload Sensor Logs

-

-

Stop

Start, Stop

Rectifier Group

OV Lock Reset

-

Yes

Yes

Collect Fault Info

-

Yes

Yes

Rectifier n

-

-

-

-

Delete Mains

-

-

Yes

Yes

Controller

NOTE This parameter is displayed only when the Comm Exp Board is connected.

Sw. to Inband Net. NOTE This parameter is displayed only when the BBU is connected.

Rectifier

NOTE This parameter is displayed only when the rectifier type is a CAN communications module.

Mains

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Second-L evel Menu

Third-Level Menu

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

Genset

Genset Group

Control Mode

-

Automatic

Automatic, Manual

Genset n

Fault Reset

-

Yes

Yes

Maint Confirm

-

Yes

Yes

Genset Self Check

Confirm Self Check

-

Yes

Yes

BC Control

-

-

Stop

Stop, Start

Reset Batt. Capacity

-

-

Yes

Yes

Battery Standard Tes

-

-

Stop

Stop, Start

Short Test Control

-

-

Stop

Stop, Start

Clear Test Log

-

-

Yes

Yes

Fast Charge Control

-

-

Stop

Stop, Start

Clear Backup Log

-

-

Yes

Yes

Clear Battery Alarm

-

-

All

All, Current Imb., Test Cancelled, Lost,

Battery

BC Protection, Imbalance Comm Exp Board

NIM01C #

Module Reset

-

Yes

Yes

NIM01C3 #

Module Reset

-

Yes

Yes

iBOX #

iBOX Equip n

Del. Com. Fail Dev

-

Yes

Yes

-

Yes

Yes

NOTE This parameter appears only if a communications failure iBOXalarm is generated.

GPS

Del Com. Fail GPS

-

NOTE This parameter is displayed only when the GPS fails to communicate.

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Second-L evel Menu

Third-Level Menu

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

DTS #

DTS Group

DTS Control

-

Auto

Auto, To Battery Group1-4

-

Yes

Yes

NOTE This parameter is displayed only when Batt Transfer Mode is set to Discharge Apart or Discharge together .

Del Com. Fail DTS NOTE This parameter appears only if a communications failure alarm is generated.

DCDB #

DTSn

Reset

-

Reset

Reset

DCDB Group

Delete Com Fail DCDB

-

Yes

Yes

-

Yes

Yes

DCDB Reset

-

Yes

Yes

Basic Control

Reset

Yes

Yes

Load Consum Clr Ctl

All Load Consum Clr

Yes

Yes

Load n Consum Clear

Yes

Yes

NOTE This parameter appears only if a communications failure alarm is generated.

Clear DCDB Loss Alm. NOTE This parameter appears only if a DCDB loss alarm is generated.

DCDBn

Camera

Camera Group

-

-

-

-

Low Cap Li-ion Batt

-

-

-

-

-

NOTE This

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A Parameter Lists

Third-Level Menu

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

Li Battery Group

Battery Standard Test

-

Stop

Start, Stop

Clear Test Log

-

Yes

Yes

Delete BMU

-

Yes

Yes

-

Yes

Yes

parameter is displayed only when Battery Model is set to BBS 4840Z.

Li Battery # NOTE This parameter is displayed only when Battery Model is set to ESM-A, ESU-A or ESM-BX.

NOTE This parameter appears only if a communications failure alarm is generated.

Clear BMU Loss Alm. NOTE This parameter appears only if an ESMU loss alarm is generated.

AIM n

Board Reset

-

-

Yes

Yes

Nonintellig ent Lock

DO Open Door

-

-

Yes

Yes

Rset Illg DrOpen Alm

-

-

Yes

Yes

ATS

ATS Group

-

-

-

-

ATS n

-

-

-

-

Efuse Group

Clear EFUSE #

-

Yes

Yes

Efuse Group #

Temp. Control

NOTE This parameter is displayed only when the EFUSE fails to communicate.

EFUSE n

-

-

-

-

Fan Group

Fan Control Mode

-

Automatic

Manual, Automatic

Heater Device

Control Mode

-

Automatic

Manual, Automatic

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Third-Level Menu

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

Heater Control

-

Off

On. Off

NOTE This parameter is displayed only when Control Mode is set to Manual.

Sensor

Smoke Sensor #

Reset Smoke Sensor

-

Yes

Yes

MIMO Module

MIMO Group

Turn On/Off

-

Module On

Module On, Turn Off

Clear Mod Loss Alarm

-

Yes

Yes

-

Yes

Yes

Turn On/Off

-

On

On, Off

24V AC Output Control

-

On

On, Off

12V DC Output Control

-

On

On, Off

NOTE This parameter is displayed only when there is an MIMO Lost alarm.

Clr Comm. Fail Equip NOTE This parameter is displayed only when the MIMO fails to communicate.

MIMO n

Clear Alarm

Historical Alarm

Delete His. Alarms

-

Yes

Yes

Active Alarm

-

-

Clear Alarm

Clear Alarm

Clear Batt. Test Log

Clear Test Log

-

-

Yes

Yes

Output Relay Test

Test Enable

-

-

No

No, Yes

Test Duration

-

-

1 min

1-15

-

-

Open

Open, Close

NOTE This parameter is displayed only when Test Enable is set to Yes.

ALMn

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Third-Level Menu

A Parameter Lists

Fourth-Level Menu

Fifth-Level Menu

Default Value

Value Range

NOTE This parameter is displayed only when Test Enable is set to Yes.

Hiber. Test Para.

Rect. Hiber. Speedup

-

-

-

-

Other Device Control

iRELAY

Ctrl to connect Nodes

-

Stop

Star, Stop

Single Board Reset

-

Yes

Yes

Blink Control

-

Star

Star, Stop

SIREN-S Ctrl

-

Opened

Opened, Closed

SIRNE-L Ctrl

-

Opened

Opened, Closed

iFUEL-RS485 1

-

-

-

-

iDATA

Board Reset

-

Yes

Yes

Blink Ctr.

-

Star

Star, Stop

Board Reset

-

Yes

Yes

Sensor Blink

-

Star

Star, Stop

Auto Adjust Sequence

-

Yes

Yes

Ctrl to connect Nodes

-

Star

Star, Stop

Board Reset

-

Yes

Yes

WiFi Switch

-

Off

On, Off

DG Comm Ex Board

-

-

-

-

5G Blade Power

Del Comm Failed Eq

-

Yes

Yes

iACMETER

WIM01C1

A.6 Site Maintain Table A-6 Site Maintain menu hierarchy Second-Level Menu

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Fourth-Level Menu

Default Value

Copyright © Huawei Technologies Co., Ltd.

Value Range

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Second-Level Menu

Third-Level Menu

Fourth-Level Menu

Default Value

Value Range

U Disk Upgrade/Cfg

-

-

-

-

U Disk Hist Record

Last Export Result

-

-

-

Upgrade/Cfg Result

-

-

-

Export File to USB

-

-

-

-

Genset Self Check

Confirm Self Check

-

Yes

Yes

Module Check

Check Result

Comm OK Equip Num

-

-

Comm Fail Equip Num

-

-

Normal Equip List

-

-

-

Abnormal Equip List

-

-

-

A.7 User Management Table A-7 User Management menu hierarchy Second-Level Menu

Default Value

Range

Change Password

-

0-9, a-z, A-Z

User Logout

Yes

Yes

NOTE  Log out the current user. 

This parameter is displayed only when you log in as an administrator or engineer.

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B

B Technical Specifications

Technical Specifications

Table B-1 SMU02C technical specifications Category

Item

Specifications

Environmental conditions

Operating temperature

–40°C to +70°C

Transportation temperature

–40°C to +70°C

Storage temperature

–40°C to +70°C

Operating humidity

5%–95% RH (non-condensing)

Storage humidity

5%–95% RH (non-condensing)

Altitude

0–4000 m When the altitude ranges from 3000 m to 4000 m, the operating temperature decreases by 1ºC for each additional 200 m.

Power supply

Structure

Input voltage range

36–72 V DC

Maximum current

0.5 A DC

Dimensions (H x W x D)

40.8 mm x 99 mm x 194.3 mm

Weight

≤ 1.5 kg

MTBF (mean time between failures)

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≥ 250,000 hours

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C FAQ

C

FAQ

C.1 How Do I Prepare the WebUI Operating Environment? Before logging in to the WebUI, you need to prepare the WebUI operating environment to connect to the monitoring unit.

Operating Environment Supported operating system: Windows 10 or later Browser: Internet Explorer 8.0 or later, FireFox 13 or later, and Chrome 20

Internet Explorer is used as an example to illustrate all WebUI operations mentioned in this document.

Setting a LAN

If the monitoring unit is connected to a LAN and a proxy server has been selected, cancel the proxy server settings. If the monitoring unit is connected to the Internet but your computer is connected to a LAN, do not cancel the proxy server settings. Otherwise, you cannot access the SMU. To cancel proxy server settings, perform the following steps: 1.

Open Internet Explorer.

2.

Choose Tools > Internet Options.

3.

Choose Connections tab, click LAN Settings.

4.

Clear Use a proxy server for your LAN.

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Figure C-1 Canceling proxy server settings

5.

Click OK.

Setting Internet Explorer Security

Set Internet Explorer security before you perform the following operations: 

Export historical logs, historical data, statistics, and battery test records.



Upload system configuration files.



Download system configuration files.



Upgrade software.

To set Internet Explorer security, perform the following steps: 1.

Open Internet Explorer.

2.

Choose Tools > Internet Options.

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C FAQ

3.

Choose Security Tab.

4.

Click Internet and click Custom level. After you specify Internet security settings, click Local intranet and click Custom level. Figure C-2 Internet Explorer security

5.

Specify the security settings. Enable the following: −

Initialize and script ActiveX controls not marked as safe for scripting



Allow previously unused ActiveX controls to run without prompt



Include local directory path when uploading files to a server

Figure C-3 Internet Explorer security setting 1

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Figure C-4 Internet Explorer security setting 2

Figure C-5 Internet Explorer security setting 3

6.

Click OK.

7.

Click the Advanced tab, and select Use SSL 3.0, Use TLS 1.0, Use TLS 1.1, and Use TLS 1.2.

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Figure C-6 Internet Explorer security setting 5

8.

Click OK.

C.2 What Should I Do If I Forgot the Password? The monitoring unit allows users to change passwords mutually on the WebUI and LCD. For example, if you forgot the WebUI login password, you can change the WebUI password on the LCD. Table C-1 Resetting the WebUI password on the LCD Main Menu

Second-Level Menu

Third-Level Menu

Setting

Parameters Settings

Local Parameters

Reset Web Password

Set based on site requirements.

NOTE The menu is displayed only when the login account is an administrator account.

For details about how to change the LCD password on the WebUI, see 5.2.5 Changing a User Password. Select the user whose login source is LCD for changing.

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There are 2 LCD account, see 3.1.4 Password.



The WebUI account is admin and the password is Changeme by default.

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D

D Acronyms and Abbreviations

Acronyms and Abbreviations

A

-

AC

Alternating current

B

-

BBU

Baseband unit

BLVD

Battery low voltage disconnected

C

-

CAN

Control area network

D

-

DC

Direct current

DCB

Deep cycle battery

DIN

Dry contact input

DOD

Depth of discharge

DTS

DC transfer switch

E

-

ESD

Electrostatic discharge

ESM

Energy storage module

ESU

Energy storage unit

F

-

FCB

Fast charge battery

FE

Fast Ethernet

H

-

HTTPS

Hypertext Transfer Protocol Secure

I

-

IMEI

international mobile equipment identity

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D Acronyms and Abbreviations

IP

Internet Protocol

L

-

LCD

Liquid crystal display

LLVD

Load low voltage disconnected

N

-

NMS

Network management system

S

-

SCB

Solar cycle battery

SMU

Site monitoring unit

SNMP

Simple Network Management Protocol

SOH

State of health

SPM

Site Power Management

U

-

UI

User interface

UIM

User interface module

USB

Universal Serial Bus

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