Capacity Fade Estimation of a Lithium-Ion Battery Through an Integrated Electrochemical Battery Model and Empirical Cycle Aging Model

S. Anwar
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Abstract

An electrochemical model based capacity fade estimation method for a Li-Ion battery is investigated in this paper. An empirical capacity fade model for estimating the state of health of a LiFePO4 electric vehicle battery was integrated with electrochemical battery model in Matlab/Simulink platform. This combined model was then validated against experimental data reported in the literature for constant current charge / discharge cycling. An HPPC current profile was then applied to the validated electrochemical-empirical battery prognosis model which reflected a real-time operating condition for charge and discharge current fluctuations in an electric vehicle battery. The combined model was simulated under the two different HPPC current inputs for three different cycle times. Additionally temperature was taken in account in estimating the cycle aging under the applied current profile to assess the present capacity remaining in the battery. The simulation results provided the state of health (SOH) of the battery for these cycling times which were comparable to the published experimental SOH values for constant current charge/discharge profiles. Thus this model can potentially be used to predict the capacity fade status of an electric vehicle battery.
基于电化学电池模型和经验循环老化模型的锂离子电池容量衰减估计
研究了一种基于电化学模型的锂离子电池容量衰减估计方法。在Matlab/Simulink平台上将LiFePO4电动汽车电池健康状态的经验容量衰减模型与电化学电池模型相结合。然后根据文献中报道的恒流充放电循环实验数据验证了该组合模型。然后,将HPPC电流分布应用于经过验证的电化学-经验电池预测模型,该模型反映了电动汽车电池充放电电流波动的实时运行状况。对两种不同HPPC电流输入、三种不同循环时间下的组合模型进行了仿真。此外,在估算应用电流剖面下的循环老化时考虑了温度,以评估电池的当前剩余容量。模拟结果提供了这些循环时间内电池的健康状态(SOH),与已发表的恒流充放电曲线的实验SOH值相当。因此,该模型可用于预测电动汽车电池的容量衰减状态。
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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