锂离子电池无源平衡BMS多级恒流充电系统设计与仿真

A. Ramelan, Firmansyah Abada, M. Nizam, F. Adriyanto, M. E. Sulistyo, Chico Hermanu Brillianto Apribowo, Ayu Latifah
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引用次数: 1

摘要

储能系统已广泛应用于电动汽车和可再生能源系统中。锂离子电池是一种应用广泛的储能系统。锂离子电池对过电流、温度和电压很敏感。为了保证锂离子电池的最佳性能和较长的使用寿命,需要一种合适的充电方法。具有被动平衡BMS的锂离子电池多级恒流充电系统有望成为一种既能快速充电又能保持锂离子电池特性的解决方案。用于锂离子电池的无源平衡BMS多级恒流充电在充电过程中利用升压转换电路,并根据需要保持电流值。此外,在BMS无源平衡过程中还采用了开关并联电阻法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Simulation of The Multistage Constant-Current Charging System with Passive Balancing BMS for Lithium-Ion Batteries
Energy storage systems have been widely used in the electric vehicle and renewable energy systems. Lithium-Ion batteries are one type of widely used energy storage system. Lithium-Ion batteries are sensitive to over current, temperature, and voltage. An appropriate method in charging Lithium-Ion batteries is needed to ensure optimal battery performance and long battery life. The Multistage Constant-Current Charging System with Passive Balance BMS for Lithium-Ion batteries is expected to be a solution for charging Lithium-Ion batteries fast but still under the characteristics of Lithium-Ion batteries. Multi Stage Constant Current Charging with Passive Balance BMS for Lithium-Ion batteries utilizes a boost converter circuit in the charging process and maintains current values as needed. Besides, it also uses the Switching Shunt Resistor method in the BMS passive balance process.
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