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Modeling Li-ion batteries for automotive application: A trade-off between accuracy and complexity

机译:汽车应用锂离子电池建模:精度与复杂性之间的权衡

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摘要

This paper presents a fast and effective approach to Li-ion battery performance modeling, particularly suited for automotive applications (i.e. HEV, PHEV, BEV). A second-order electrical equivalent circuit model made up by one voltage source, one series resistor and two series RC blocks (dual-polarization model), is here selected as the best trade-off solution for the task, addressing both acceptable levels of accuracy and complexity. While a lithium-iron-phosphate cylindrical battery cell is chosen for the purpose of the study, the presented procedure has broader validity and is mostly independent of Li-ion chemistry and/or cell format. The battery model is parametrized through a low time-consuming current pulse test, performed during both charging and discharging, at different state of charge levels. The temperature and load-current effects on the battery performance are not considered for simplicity and lightness of the presented model. Validation is carried out by comparing measured and simulated results during the dynamic current pulse test, showing a high level of agreement between the two.
机译:本文介绍了一种快速有效的锂离子电池性能建模方法,特别适合于汽车应用(即HEV,PHEV,BEV)。这里选择由一个电压源,一个串联电阻和两个串联RC模块组成的二阶等效电路模型(双极化模型)作为该任务的最佳权衡解决方案,同时解决了两个可接受的精度水平和复杂性。尽管出于研究目的选择了磷酸铁锂锂电池,但该程序具有更广泛的有效性,并且与锂离子化学和/或电池格式无关。通过低耗时的电流脉冲测试对电池模型进行参数化,该测试在充电和放电期间以不同的充电水平进行。为了简化和简化本模型,未考虑温度和负载电流对电池性能的影响。通过比较动态电流脉冲测试期间的测量结果和仿真结果来进行验证,这表明两者之间的一致性很高。

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