Time-domain modeling of constant phase element for simulation of lithium batteries under arbitrary charging and discharging current profiles

Chun-Sing Cheng, H. Chung, Ricky Wing-hong Lau
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引用次数: 7

Abstract

Derivation of a time-domain model for predicting the voltage-current characteristics of lithium batteries under arbitrary charging and discharging current profiles will be presented. The methodology is based on firstly formulating the generic time-domain voltage-current characteristics of a constant phase element (CPE) unit and then applying the model for multiple CPEs in the battery electrical model. A decimation technique will be applied to minimize the computational burden, and the numerical stability of the entire model will be studied. Finally, the accuracy of the developed time-domain model is verified by comparing the results with the measurement results obtained from a hardware testbed and with the simulation results obtained from the models with multiple parallel resistor-capacitor units.
任意充放电电流分布下锂电池恒相元仿真的时域建模
推导了在任意充放电电流分布下预测锂电池电压-电流特性的时域模型。该方法首先建立了恒相元件(CPE)单元的通用时域电压电流特性,然后将该模型应用于多个恒相元件的电池电模型。将采用抽取技术来减少计算量,并研究整个模型的数值稳定性。最后,通过与硬件测试平台的测量结果以及多个并联电阻-电容单元模型的仿真结果进行比较,验证了所建立的时域模型的准确性。
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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