考虑迟滞的电动汽车电池外部因素下开路电压及内部退化分析

Huiqiao Liu, Qian Xiao, Zhipeng Jiao, Jinhao Meng, Wenbiao Lu, Yunfei Mu, H. Jia
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引用次数: 0

摘要

针对不同外部因素下的汽车应用,开展开路电压(OCV)试验及内部潜在劣化诊断,对于了解电池的充电状态/健康状态与外部因素的关系具有重要意义。本文提出了一种在驾驶条件下不同外部因素(包括机械应力和温度)下LiFePO4正极电池OCV滞回的分析方法。首先,介绍了电池内部的主要现象和阻抗计算方法。ICM用于描述外部因素作用下的欧姆电阻、电荷转移电阻和华宝电阻的阻抗情况。在此基础上,对外因作用下的OCV滞回和内阻进行了实验研究。最后,研究结果表明,低温对OCV迟滞的影响尤为明显。电化学阻抗谱(EIS)受机械应力和温度的影响。-10℃温度效应和挤压应力对欧姆电阻影响较大;40℃温度效应和6自由度振动应力对电荷转移电阻影响较大。10°C和0°C温度效应对华宝电阻有很大的影响。此外,根据内阻或外因与潜在老化机制、潜在老化效应和相关效应之间的关系,可以对内部相关退化进行定性诊断。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Open Circuit Voltage and Internal Degradation under External Factors for EV Battery Considering Hysteresis
The open circuit voltage (OCV) tests and internal potential degradation diagnosis for vehicle application under different external factors has significance in understanding the relationship between the state of charge/ state of health of the battery and the external factors. In this paper, an analysis method is proposed for the OCV hysteresis of battery (cathode: LiFePO4 under the different external factors, including mechanical stress and temperature under driving conditions. Firstly, the main phenomenon inside the battery and impedance calculation methodology (ICM) is introduced. The ICM is used to describe the impedance conditions of ohmic resistance, charge transfer resistance, and Warburg resistance under external factors. Then, many experimental tests are conducted to investigate the OCV hysteresis and internal resistances under external factors. Finally, the results demonstrate the OCV hysteresis is mainly affected by low temperature especially. The electrochemical impedance spectroscopy (EIS) is influenced by both the mechanical stress and the temperature. The -10 °C temperature effect and extrusion stress have a huge impact on ohmic resistance; the 40°C temperature effect and 6-DOF vibration stress have great impact on charge transfer resistance. The 10°C and 0°C temperature effects have tremendous influence to Warburg resistance. In addition, according to the relationship between internal resistances or external factors and potential aging mechanisms, potential aging effect and pertinent effect, the internal pertinent degradation can be diagnosed qualitatively.
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