Simulation of lithium-ion batteries from a electric vehicle perspective

Florin Dragomir, O. Dragomir, A. Oprea, L. Olteanu, N. Olariu, V. Ursu
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引用次数: 5

Abstract

Electricity as an energy vector for vehicle propulsion offers the possibility to substitute oil with a wide diversity of primary energy sources. This could ensure security of energy supply and a broad use of renewable and carbon-free energy sources in the transport sector which could help the European Union targets on carbon-dioxide emissions reduction. Electric cars and hybrid cars contain roughly the same type of traction batteries. A lithium-ion battery or Li-ion battery is a type of rechargeable battery in which lithium ions move from the negative electrode to the positive electrode during discharge and back when charging. Lithium-ion batteries use an intercalated lithium compound as one electrode material, compared to the metallic lithium used in a non-rechargeable lithium battery. This paper simulation a model of a lithium battery pack. For electric vehicles, the driver needs to know how much he will travel before the vehicle's batteries require a recharge. This paper expands upon the general structure of the typical cell electrical equivalent circuit model presented in prior literature. The paper show a practical method for evaluating the electrical equivalent circuit parameters using pulse discharge experimental data to create lookup tables with cell temperature and SOC as independent variables.
基于电动汽车视角的锂离子电池仿真
电力作为车辆推进的能量载体,提供了用多种多样的初级能源替代石油的可能性。这可以确保能源供应的安全,并在运输部门广泛使用可再生能源和无碳能源,从而有助于实现欧盟减少二氧化碳排放的目标。电动汽车和混合动力汽车使用的牵引电池类型大致相同。锂离子电池或锂离子电池是一种可充电电池,其中锂离子在放电时从负极移动到正极,在充电时返回。与不可充电锂电池中使用的金属锂相比,锂离子电池使用插层锂化合物作为一个电极材料。本文对锂电池组模型进行了仿真研究。对于电动汽车,驾驶员需要知道在车辆电池需要充电之前他将行驶多少路程。本文对以往文献中提出的典型电池等效电路模型的一般结构进行了扩展。提出了一种利用脉冲放电实验数据计算等效电路参数的实用方法,建立了以电池温度和SOC为自变量的查找表。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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