An equivalent circuit model of a deformed Li‐ion battery with parameter identification

电池(电) 泰文定理 等效电路 电压降 电压 材料科学 下降(电信) 计算机科学 控制理论(社会学) 电气工程 功率(物理) 工程类 物理 热力学 人工智能 控制(管理)
作者
Wenquan Shuai,Enying Li,Hu Wang
出处
期刊:International Journal of Energy Research [Wiley]
卷期号:44 (11): 8372-8387 被引量:16
标识
DOI:10.1002/er.5500
摘要

A new equivalent circuit model (ECM) of a Li-ion battery is developed in this study. The developed model is utilized to obtain the dynamic electrical response of the battery when it is deformed under external force. Compared with other models, this model is developed based on a modified Thevenin model, and the parameters of the developed model are relevant to state of charge, the battery surface temperature, and the deformation. In this study, to obtain the real electrical response of the battery when it deformed under external force, batteries that are compressed by different deformations from 0 to 5 mm are studied with pulse discharging tests. Then, the parameters of the circuit elements are identified by a differential evolution algorithm based on the data obtained from these tests. Moreover, the data from the pulse discharging tests of batteries compressed by 3.5, 4.25, and 4.5 mm and the data from the pulse charging tests of batteries compressed by 0 and 1 mm are used to verify the parameters. The results illustrate that the battery capacity should drop significantly when the battery is severely deformed, but the battery still can be charged and discharged. Most importantly, the discharging curves of these tested deformed batteries are similar to those of undeformed ones. Moreover, the developed new ECM can predict the dynamic electrical response of a deformed battery accurately.
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