Series-connected lithium-ion battery pack health modeling with cell inconsistency evaluation

Yuchen Song, Datong Liu, Yu Peng
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引用次数: 6

Abstract

The lithium-ion battery has become the prevalent technology to store and serve electric power. The state of health (SOH) for a battery cell directly influences the working safety and reliability of the host system. Moreover, since the battery cells are series connected for higher terminal voltage, the cell inconsistency will also impact the performance of the whole battery pack. In order to quantitatively evaluate the inconsistency of lithium-ion cells and represent the battery health state, this paper conducted a numerical study on inconsistency analysis and proposed a novel degradation feature for lithium-ion battery pack health state modeling. The charge cut-off voltage of each lithium-ion battery cell is utilized for battery cell inconsistency analysis according to the practical operating conditions. The normality test results prove that the inconsistency among lithium-ion battery cells is normal distributed. Furthermore, the correlation between the normal distribution parameters and battery pack performance degradation features are then quantitatively analyzed. The Spearman’s rank correlation coefficient is -0.88, which means the scale parameter of the normal distribution is negatively related with the battery pack performance degradation. Moreover, the experimental results also prove that with the battery pack performance degrades, the inconsistency among the battery cells is getting larger. The scale parameter in normal distribution is not only capable for cell inconsistency representation but also promising for series connected lithium-ion battery pack degradation evaluation.
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串联锂离子电池组健康建模与电池不一致性评估
锂离子电池已经成为一种流行的电力存储和服务技术。电池单体的健康状态直接影响到主机系统的工作安全性和可靠性。此外,由于电池单体是串联的,端子电压较高,因此单体不一致也会影响整个电池组的性能。为了定量评价锂离子电池的不一致性,表征电池的健康状态,本文对不一致性分析进行了数值研究,提出了一种新的退化特征用于锂离子电池组健康状态建模。根据实际运行情况,利用各锂离子电池单体的充电截止电压进行单体不一致性分析。正态性测试结果证明了锂离子电池单体间的不一致性是正态分布的。在此基础上,定量分析了正态分布参数与电池组性能退化特征的相关性。Spearman的秩相关系数为-0.88,即正态分布的尺度参数与电池组性能退化呈负相关。此外,实验结果还证明,随着电池组性能的降低,电池单体之间的不一致性也越来越大。正态分布的尺度参数不仅能够表征电池的不一致性,而且对于串联锂离子电池组的劣化评价也很有前景。
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