基于不同推进剖面的电动汽车综合建模及性能分析

S. Hamidifar, Seyed Mahdi Mousavi, N. Kar
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引用次数: 0

摘要

纯电动汽车(BEV)技术由于其可靠的储能系统而成为最常用的电动汽车类型。根据电动汽车不同的行驶周期,电动机由于转矩动态的突然变化而发生退化。因此,电机的可靠性和性能评估是非常重要的。本文介绍了用于观察不同运行模式下电机状态的暂态和谐波分析技术。为了研究系统的特性,本文除了对转矩和定子电流进行谐波分析外,还对不同电机的定子电流的暂态响应进行了研究。在理想的纯电动汽车中,由电池提供的电机电压被认为是恒定的,而在实际应用中,由于电池的SOC特性,电压会下降。本文还将讨论电机频率响应,用于研究电机输入电压对系统性能的影响。本文讨论并报道了完整的试验结果,以验证数值研究结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comprehensive modeling of electric vehicles to analyze their performance based on different propulsion profiles
Battery electric vehicle (BEV) technology is the most often used type of EV due to its reliable energy storage system. According to the different driving cycles of EVs, electric motors undergo degradation as a result of sudden variations in the dynamic state of torque. Therefore, reliability and performance assessment of the electric motor are important. This paper presents transient and harmonic analysis techniques that were engaged to observe the motor conditions in different operating modes. In order to study the system's behavior, in addition to the harmonic analysis on torque and stator currents, the transient response of stator current for different electric motors is also touched upon in this paper. In an ideal BEV, the motor voltage supplied by the battery is considered to be constant, whereas in real applications, the voltage drops due to the SOC characteristics of the batteries. This paper will also discuss the motor frequency response used to investigate the effects of motor input voltage on the performance of the system. Complete sets of the experimental test is discussed and reported in this study to verify the numerical investigation results.
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