Analysis and Evaluation of Characteristics of Li-ion Battery using Simulink and Impacts of Ambient Temperature on Pure Electric Vehicle

Pankhuri Kaushik, Manjeet Singh
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Abstract

The automotive sector has shifted towards Electrically Powered Vehicles due to the increase in energy demand, the gradual limiting of fossil fuels, and environmental issues. The Efficiency of traction of battery packs affects the performance and range of EVs. Temperature significantly affects the rate of Lithium-ion battery deterioration as well as the performance of the chemical reaction that takes place inside the battery which impacts the overall performance of the vehicle. The internal temperature of the battery leads to the dropdown of resistance which cause lots of heat generation. In the same way, external temperature i.e., ambient temperature also impacts the performance of the battery. An optimal temperature range is required for the better performance of the vehicles. In battery electric vehicles, there is a sharp decrease in driving range in cold conditions as compared to combustion engines, which is the drawback of battery electric vehicles. This paper includes the analysis of Li-ion battery characteristics under different conditions by using the UDDS drive cycle and an analysis of ambient temperature impacts on EV’s range in automotive vehicle operation.
基于Simulink的锂离子电池特性分析与评价及环境温度对纯电动汽车的影响
由于能源需求的增加、化石燃料的逐渐限制以及环境问题,汽车行业已经转向电动汽车。电池组的牵引效率影响着电动汽车的性能和续航里程。温度会显著影响锂离子电池的劣化率,以及电池内部发生的化学反应的性能,从而影响车辆的整体性能。电池内部温度的升高导致电阻的下降,从而产生大量的热量。同样,外部温度,即环境温度也会影响电池的性能。为了更好地发挥车辆的性能,需要一个最佳的温度范围。在电池电动汽车中,与内燃机相比,在寒冷条件下行驶里程急剧下降,这是电池电动汽车的缺点。本文采用UDDS驱动循环对锂离子电池在不同工况下的特性进行了分析,并分析了环境温度对电动汽车行驶里程的影响。
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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