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Battery Management System (BMS)

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The three-level architecture of BMS (battery management system) is usually divided into the main control layer (top layer), the slave control layer (middle layer) and the single-unit acquisition layer (bottom layer).  

Battery Management System (BMS)
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  • Battery Management System (BMS)

Technical parameters

Features:
- Reliable, stable  
- High performance  
- Well-known brand  
- Low power cost  

BMS three-level architecture:  
The three-level architecture of BMS (battery management system) is usually divided into the main control layer (top layer), the slave control layer (middle layer) and the single-unit acquisition layer (bottom layer).  
1. Main control layer: Responsible for global management, including SOC (battery status) estimation, fault diagnosis, communication with vehicles and other core functions to ensure system safety and coordination.  
2. Slave control layer: As an intermediate hub, it summarizes the battery cell voltage, temperature and other data collected by the bottom layer, and executes main control instructions to achieve balanced control.  
3. Single unit acquisition layer: Directly connect to the battery pack, monitor the voltage, temperature and other parameters of the single unit in real time, with high accuracy requirements and ensuring the reliability of the data foundation.  
The three-level architecture has a clear division of labor, taking into account both scalability and stability, and is widely used in electric vehicles, energy storage systems and other fields.

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Battery Management System (BMS)

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