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Research on the capacity fading characteristics of a Li-ion battery based on an equivalent thermal model

机译:基于等效热模型的锂离子电池容量衰减特性研究

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Temperature has a direct impact on the capacity fading of a power Li-ion battery during the battery's lifecycle; however, the inner temperature of the battery cannot be measured directly because of the sealed structure. To address this problem, we estimate the inner temperature of a Li-ion battery by measuring the surface and ambient temperature using an equivalent thermal model to build the ETM-Arrhenius (equivalent thermal model-Arrhenius) model that models the dependence of the battery capacity fading on the inner temperature to enable the accurate prediction of the capacity fading characteristics of a Li-ion battery during its lifecycle. We conducted a lifecycle test on a Li-ion battery at different temperatures, and the results indicate that the ETM-Arrhenius model can predict the capacity fading characteristics of a Li-ion battery accurately during its lifecycle; in addition, when the model is used in EFK, UKF and other common state-of-charge (SOC) estimation algorithms, the accuracy of the SOC estimation can be improved significantly.
机译:在电池的生命周期内,温度会直接影响动力锂离子电池的容量衰减。但是,由于采用密封结构,因此无法直接测量电池的内部温度。为了解决这个问题,我们使用等效热模型通过测量表面温度和环境温度来估算锂离子电池的内部温度,以建立可模拟电池容量依赖性的ETM-Arrhenius(等效热模型-Arrhenius)模型在内部温度上褪色,以能够准确预测锂离子电池在其生命周期中的容量褪色特性。我们在不同温度下对锂离子电池进行了生命周期测试,结果表明ETM-Arrhenius模型可以准确预测锂离子电池在其生命周期中的容量衰减特性。另外,当该模型用于EFK,UKF和其他常见荷电状态(SOC)估计算法时,SOC估计的准确性可以大大提高。

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