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An electro-thermal model and its electrical parameters estimation procedure in a lithium-ion battery cell

机译:锂离子电池单元中的电热模型及其电气参数估计过程

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In this work, an electro-thermal model of a single lithium-ion battery cell has been developed in Simulink-Simscape environment. The model is divided in two interacting parts: the electrical and the thermal one. The electrical model consists of one Resistor-Capacitor branch circuit that is coupled to a thermal model consisting of a discretized volume, representing the battery cell, built on the basis of the thermal-electrical analogy. The heat generated by the cell is estimated using a lumped heat source approach. One of the novel aspects of the work is the definition and detailed description of an automatic procedure to extract the parameters of the RC circuit from pulse discharge tests, based on a Multi-Linear Regression Model approach. The electrical and thermal performance of the model was validated with dynamic and static measured data: the mean square error of the voltage prediction in dynamic conditions is 0.00027 V-2. In static conditions, the mean square error of the voltage and temperature predictions are 0.014 V-2 and 2.28 degrees C-2, respectively. This model, due to its ease of application, can be used as a tool to define new modules architecture, as well as to support the design of the battery cooling system. (C) 2021 Elsevier Ltd. All rights reserved.
机译:在这项工作中,在Simulink-Simscape环境中开发了单个锂离子电池单元的电热模型。该模型分为两个相互作用部件:电气和热量。电模型包括一个电阻电容器分支电路,该电容器分支电路耦合到由表示电池单元的离散体积组成的热模型,基于热电模糊构建。使用集体热源方法估计由电池产生的热量。基于多线性回归模型方法,该工作的一个新颖方面是自动过程从脉冲放电测试提取RC电路参数的定义和详细描述。使用动态和静态测量数据验证了模型的电气和热性能:动态条件下电压预测的平均方误差为0.00027 V-2。在静态条件下,电压和温度预测的均方误差分别为0.014V-2和2.28度C-2。该模型由于其易于应用,可用作定义新模块架构的工具,以及支持电池冷却系统的设计。 (c)2021 elestvier有限公司保留所有权利。

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