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A Current Equalization Method for Serially Connected Battery Cells Using a Single Power Converter for Each Cell

机译:对于每个电池使用单个电源转换器的串联连接电池的电流均衡方法

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摘要

This paper presents a method to control the current of each battery cell in a serially connected battery stack according to each cell capacity. With this method, the performance of a battery stack can be increased significantly. In a second life concept, battery cells with different capacities and even battery cells with different chemistries can be connected together. Moreover, if one or more battery cells become inoperative, then the battery stack can still be used in the limp-home operation mode. The required power converter structure and the calculation of the individual cell currents are presented, and a simulation for two different power converters during discharging and charging is performed. A current equalization prototype is used to validate the simulation results and to show the performance on a real battery stack with 12 serially connected cells. Finally, the influence of the equalization currents and the capacity variance in the battery stack on the discharging energy are investigated.
机译:本文提出了一种根据每个电池容量来控制串联连接的电池组中每个电池单元电流的方法。使用这种方法,可以显着提高电池组的性能。在第二生命周期概念中,可以将具有不同容量的电池单元,甚至具有不同化学成分的电池单元连接在一起。此外,如果一个或多个电池单元无法工作,则该电池组仍可以在mp行操作模式下使用。介绍了所需的功率转换器结构和单个电池电流的计算,并对两个不同功率转换器在放电和充电期间进行了仿真。电流均衡原型用于验证仿真结果并显示在具有12个串联连接的电池的真实电池组上的性能。最后,研究了均衡电流和电池组中容量变化对放电能量的影响。

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