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Use operation

The correct operation of the energy storage battery system is an important premise to ensure its safe and efficient operation. For the tower backup energy storage battery, "first use", "charge and discharge operation" and "communication and monitoring" are the core operation links, which require users to operate in strict accordance with relevant specifications to ensure the performance and life of the system.

Use operation

The operation of the tower backup energy storage battery requires great attention to the initialization and commissioning of the first use, the safety management of the charge and discharge process, and the normal operation of the communication and monitoring system. By strictly adhering to the operating specifications, users can not only ensure the safety of the system, but also extend the service life of the battery and improve the overall performance of the energy storage system.

Matters needing attention

Check the battery: Before using the battery for the first time, you need to check whether the battery is in good condition, whether the cable is firmly connected, and whether the components are properly installed. Ensure that there are no obvious abnormalities before the device is powered on.
System initialization: When starting the system for the first time, initialize the system according to the operating manual provided by the manufacturer, including battery capacity calibration, charge and discharge parameter setting, and safety parameter calibration.
Operation debugging: After startup, run the system self-test function to ensure that all modules operate normally, and check whether the voltage, current, communication and other parameters meet the design requirements.

First charge: The first charge should be carried out in accordance with the current and time recommended by the manufacturer, which is usually an important step in activating the battery to ensure that the energy storage module is in the best state.
Charging operation: During normal operation, the charging parameters (such as voltage and current) should be kept within the safe range to avoid safety problems caused by overcharging.
Discharge operation: Avoid deep discharge when discharging, which may damage the battery life. The depth of discharge should be set according to the specific battery type, and it is usually recommended to maintain a certain remaining capacity (such as 20%-30%).
Operation monitoring: During the charging and discharging process, it is necessary to monitor the voltage, temperature and current of the system at any time to prevent abnormal conditions.

Communication configuration: Ensure that the communication between the energy storage system and the monitoring device is normal. For the first time, set the communication protocol (such as Modbus and CAN) and IP address as required to ensure seamless communication with external systems.
Real-time monitoring: Through the monitoring system, the operating status of the battery can be viewed at any time, including core parameters such as capacity, voltage, and temperature, so that anomalies can be handled in time.
Alarm handling: The system built-in alarm function, when detected overheating, overcharge, overdischarge and other problems, will issue an alarm in time. Users need to take corresponding measures according to the alarm information to prevent the problem from expanding.
Data recording: The monitoring platform records and analyzes the operating data of the battery, which helps to optimize the charging and discharging strategy and improve the overall efficiency of the system.

TOWER BACKUP BATTERY

With its integrated structural design, intelligent BMS monitoring, and standardized cabinet installation, ESS 48V series lithium iron phosphate batteries can provide reliable backup power for access network equipment, remote exchange, mobile communication, transportation equipment, emergency power and other systems.

Extended reading

User guide

User guide The use guide for tower backup energy storage...

Core component

Core component The performance and stability of tower backup energy...

Design advantage

Design advantage The design advantages of tower backup energy storage...

Application scenario

Application scenario The application scenario of tower backup energy storage...

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