Research on Inconsistency Evaluation of Retired Battery Systems in Real-World Vehicles

Jiegang Wang, Kerui Li, Chi Zhang, Zhenpo Wang, Yangjie Zhou, Peng Liu
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Abstract

Inconsistency is a key factor triggering safety problems in battery packs. The inconsistency evaluation of retired batteries is of great significance to ensure the safe and stable operation of batteries during subsequent gradual use. This paper summaries the commonly used diagnostic methods for battery inconsistency assessment. The local outlier factor (LOF) algorithm and the improved Shannon entropy (ImEn) algorithm are selected for validation based on the individual voltage data from real-world vehicles. Then, a comprehensive inconsistency evaluation strategy for retired batteries with many levels and indicators is established based on the three parameters of LOF, ImEn, and cell voltage range. Finally, the evaluation strategy is validated using two real-world vehicle samples of retired batteries. The results show that the proposed method can achieve the inconsistency evaluation of retired batteries quickly and effectively.
真实世界车辆中退役电池系统不一致性评估研究
不一致性是引发电池组安全问题的关键因素。对报废电池进行不一致性评估,对于确保电池在后续逐步使用过程中的安全稳定运行具有重要意义。本文总结了电池不一致性评估的常用诊断方法。根据实际车辆的单体电压数据,选择局部离群因子(LOF)算法和改进香农熵(ImEn)算法进行验证。然后,根据 LOF、ImEn 和电池电压范围这三个参数,为具有多个级别和指标的退役电池建立了综合不一致性评估策略。最后,使用两个真实世界中的报废电池车辆样本对该评估策略进行了验证。结果表明,所提出的方法可以快速有效地实现报废电池的不一致性评估。
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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