An Active Equalization Method for Cascade Utilization Lithium Battery Pack With Online Measurement of Electrochemical Impedance Spectroscopy

Lujun Wang, Xiankai Zeng, Long Chen, Lu Lv, Li Liao, Jiuchun Jiang
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Abstract

With the rapid development of new energy vehicles, a large number of lithium batteries have been produced, used and retired. The full utilization and safe use of the whole life cycle of the batteries have become a hot topic in the research field. Compared to brand new batteries, retired power batteries exhibit significant inconsistency and safety risks due to aging, thus necessitating effective battery equalization and safety monitoring methods. In this article, an active equalization method for cascade utilization lithium battery pack with online measurement of electrochemical impedance spectroscopy is proposed to actively equalize the retired battery pack and alleviate the inconsistency of the battery pack. Besides, the electrochemical impedance spectrum of the single battery is measured online without adding additional hardware circuit, so as to realize real-time safety monitoring and solve the safety problem of the battery. Finally, in order to verify the feasibility of the active equalization and electrochemical impedance spectrum monitoring scheme designed in this article, a simulation model is built based on MATLAB-Simulink platform. The simulation results show that the six batteries in the proposed scheme model complete the active equalization in about 710s, 850s and 740s respectively in the balance mode, charge mode and discharge mode, and the electrochemical impedance spectrum in the frequency range of 1-20KHz can be successfully measured.
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利用电化学阻抗光谱在线测量级联利用锂电池组的主动均衡方法
随着新能源汽车的快速发展,大量锂电池被生产、使用和报废。电池全生命周期的充分利用和安全使用已成为研究领域的热点话题。与全新电池相比,退役动力电池因老化而表现出明显的不一致性和安全隐患,因此需要有效的电池均衡和安全监测方法。本文提出了一种在线测量电化学阻抗谱的级联利用锂电池组主动均衡方法,以主动均衡退役电池组,缓解电池组的不一致性。此外,在不增加额外硬件电路的情况下,在线测量单体电池的电化学阻抗谱,从而实现实时安全监测,解决电池的安全问题。最后,为了验证本文设计的主动均衡和电化学阻抗谱监测方案的可行性,基于 MATLAB-Simulink 平台建立了仿真模型。仿真结果表明,所提方案模型中的六块电池在平衡模式、充电模式和放电模式下分别在约 710s、850s 和 740s 的时间内完成主动均衡,并能成功测量频率范围为 1-20KHz 的电化学阻抗谱。
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