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Coupled electro-thermal modeling of lithium-ion batteries for electric vehicle application

机译:电动汽车应用锂离子电池耦合电热模型

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The lithium-ion battery is a complex system that is both non-linear and non-stationary, which involves electrical, thermal and electrochemical dynamics In order to deepen the understanding of battery system dynamics, in this paper, an electro-thermal coupled model is proposed for a 40 Ah lithium-ion battery cell with Nickel Manganese Cobalt Oxide cathode material and graphitic anode. The developed model takes into account the dynamics of the high power applications and then allows to accurately present the physicochemical phenomena occurring in a battery cell. It is built through a dynamic equivalent circuit and a thermal model. The battery is divided into n x m nodes with two dimensions and each node is represented by an equivalent circuit. Both models are coupled in the same loop, the electric-thermal through the distribution of power losses to calculate the distribution of temperature and the thermal-electric through the mean temperature of the battery to update the electric parameters. The obtained results show that the proposed model is able to simulate the dynamic interaction between the electric and the thermal battery behavior, and high performance for the cell surface temperature prediction.
机译:锂离子电池是一种复杂的系统,它既是非线性和非静止,这涉及电气,热和电化学动力学,以加深对电池系统动力学的理解,本文是一种电热耦合模型提出了具有镍锰钴氧化物阴极材料和石墨阳极的40AH锂离子电池电池。开发模型考虑了高功率应用的动态,然后允许准确地呈现在电池单元中发生的物理化学现象。它是通过动态等效电路和热模型构建的。电池被分成N X M节点,具有两个维度,每个节点由等效电路表示。这两种型号都在相同的环路中耦合,通过电力损耗的分布电热量来计算温度和热电的分布,通过电池的平均温度来更新电参数。所得结果表明,该模型能够模拟电气电池行为之间的动态相互作用,以及用于电池表面温度预测的高性能。

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