Investigation of series-parallel connections of multi-module batteries for electrified vehicles

F. Baronti, R. Di Rienzo, Nicola Papazafiropulos, R. Roncella, R. Saletti
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引用次数: 28

Abstract

Large-format Lithium-ion battery packs consist of the series and parallel connection of elemental cells, usually assembled into modules. The required voltage and capacity of the battery pack can be reached by various configurations of the elemental cells or modules. It is thus worth investigating if different configurations lead to different performance of the battery pack in presence of a mismatch in the cell characteristics. A simulation tool is developed in this work and applied to a battery pack consisting of standard 12 V modules connected with various serial/parallel topologies. The results show that battery configurations with modules directly connected in parallel and then assembled in series are more robust against variation of the cell capacity through the battery. Moreover, given the cells and the battery configuration, we show that changing the position of the cells has a significant impact on the usable capacity of the battery.
电动汽车多模组电池串并联的研究
大型锂离子电池组由元素电池的串联和并联组成,通常组装成模块。电池组所需的电压和容量可以通过元素电池或模块的各种配置来达到。因此,在电池特性不匹配的情况下,不同的配置是否会导致电池组的不同性能是值得研究的。在这项工作中开发了一个仿真工具,并应用于由标准12v模块组成的电池组,连接各种串行/并行拓扑结构。结果表明,模块直接并联再串联的电池配置对电池容量的变化具有更强的鲁棒性。此外,考虑到电池和电池配置,我们表明改变电池的位置对电池的可用容量有重大影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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