内阻
健康状况
电池(电)
三元运算
锂离子电池
荷电状态
电动汽车
离子
材料科学
汽车工程
核工程
工程类
计算机科学
化学
热力学
物理
功率(物理)
有机化学
程序设计语言
作者
Hao Ji,Wei Zhang,Xuhai Pan,Min Hua,Yi‐Hong Chung,Chi‐Min Shu,Lijing Zhang
摘要
The state of health (SOH) is a crucial indicator of lithium-ion batteries. A battery cycle and calendar life are critical for electric vehicle batteries. Complex interactions occur between the SOH and internal resistance of a battery. In this study, several ternary lithium-ion battery charge discharge experiments were performed to investigate the effects of the ambient temperature, discharge rate, and depth of discharge on a battery's internal resistance. An SOH prediction model was then constructed and used to evaluate the remaining capacity of the electric vehicle battery. The model was verified through various experiments, and a comparison of experimental and model-derived data revealed a favorable agreement. Thus, the model accurately predicted the SOH of a ternary lithium-ion battery.
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