锂离子电池的分层主动平衡结构

Handong Gui, Zhiliang Zhang, Dong-Jie Gu, Yang Yang, Zhou-Yu Lu, Yanfei Liu
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引用次数: 10

摘要

提出了一种适用于串联锂离子电池的分层电池平衡结构。电池组被分成不同的电池组,底层是由电池组组成的相邻电池-电池结构。顶层连接到不同的电池组,可以将能量从一个电池组双向传递到任何其他电池组,从而具有很高的灵活性。提出了一种多向多端口转换器作为顶层。采用分层结构,可实现不同电池组电池平衡能量传递的解耦,避免了平衡过程中的反复充放电。这有利于延长电池寿命和提高健康状态(SOH)。此外,该架构还可以降低平衡电路的额定电流,从而降低所需成本,提高系统效率。实验结果验证了该体系结构的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A hierarchical active balancing architecture for Li-ion batteries
This paper proposes a hierarchical battery balancing architecture for the series connected lithium-ion batteries. The battery cells are grouped into different packs and the bottom layer is the Adjacent Cell-to-Cell structure consisting of the packs. The top layer is connected to different packs and can deliver the energy from one pack to any other pack bi-directionally, leading to high flexibility. A multi-directional multi-port converter is proposed to serve as the top layer. With the hierarchical architecture, the balanced energy transfer of the cells in different packs can be decoupled, which avoid the repeated charging and discharging during the balancing process. This is beneficial for lengthening the battery lifetime and increasing the State-of-Health (SOH). Moreover, the proposed architecture can lower the current rating of the balancing circuits, which helps decrease the required cost and improve the system efficiency. The experimental results verified the benefits of the proposed architecture.
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