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Simplified electrochemical lithium-ion battery model with variable solid-phase diffusion and parameter identification over wide temperature range

机译:具有可变固相扩散的简化电化学锂离子电池模型和宽温度范围内的参数识别

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摘要

Most electrochemical models fail to capture the variable solid-phase diffusion process and low-temperature characteristics of lithium-ion batteries, thereby limiting the model accuracy and their application in extreme climates. This paper develops a simplified yet high-precision electrochemical model for lithium-ion batteries and identifies its parameters over a wide temperature range. First, the thermal-coupled simplified electrochemical model with lumped parameters is presented, in which the concentration-dependent solid-phase diffusion is particularly considered to reflect the real dynamics within solid particles. Second, all model parameters are categorized and stepwise parameter identification is realized by extracting different dynamics from the measured data of the designed tests. Finally, the model is thoroughly verified under galvanostatic discharge tests over the temperature range of −20°C to 45°C. Results show that the proposed model outperforms the model with constant solid-phase diffusion in both voltage and temperature predictions, especially at subzero temperatures. Moreover, based on the validated model, a health-conscious characteristic map for battery power capability prediction is generated by imposing the solid-phase diffusion constraint.
机译:大多数电化学模型不能捕获锂离子电池的可变固相扩散工艺和低温特性,从而限制了模型精度及其在极端气候中的应用。本文开发了一种用于锂离子电池的简化但高精度的电化学模型,并在宽温度范围内识别其参数。首先,提出了具有集总参数的热耦合简化的电化学模型,其中浓度依赖性的固相扩散尤其考虑反映固体颗粒内的实际动态。其次,通过从设计测试的测量数据中提取不同的动态来实现所有模型参数和逐步参数识别。最后,在-20℃至45℃的温度范围内的电流放电测试下彻底验证该模型。结果表明,该模型在电压和温度预测中具有恒定的固相扩散的模型,特别是在亚零温度下。此外,基于验证模型,通过施加固相扩散约束来产生用于电池功率能力预测的健康有意识的特征图。

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