基于控制器和MATLAB Simulink的电动汽车动力总成性能分析

Abhishek Mohan, S. Adwaith, Alfia Subair, Anto Jose, Ninu Joy
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引用次数: 1

摘要

预计电动汽车不久将在我国拥有巨大的市场。这说明有一个更好的车辆性能。因此,对电动汽车部件的性能和行为进行评估可以减少测试时间和成本,提高测试效率。本文主要研究电动汽车动力总成的研制及其电机控制算法。分析了某市售电动汽车的规格参数,确定了动力总成尺寸作为基准参数。本文将在Simulink环境下对系统模型及其控制算法进行仿真分析。电机的控制算法将上传到市售电机控制器上,并使用MATLAB Simulink的处理器环内特征(PIL)在虚拟电机和车辆模型上分析算法的性能和效率。目的是在Matlab/Simulink环境下研究和开发电动汽车动力总成,并将设计的动力总成及其控制算法的性能与现有基准的性能进行比较。该系统以驱动循环为输入,给出电机和电池组的各种性能参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Analysis of a Complete EV Powertrain using a Controller and MATLAB Simulink
Electric Vehicle is anticipated to have a massive market soon in our country. This accounts for having a better performance of the vehicle. Hence estimating the performance and behavior of the electric vehicle components reduces testing time and cost and makes it more efficient. The development of an Electric Vehicle powertrain and the control algorithm of the motor is intended. The specifications and parameters of a commercially available electric vehicle were analyzed and its powertrain dimensions were decided as the benchmark parameters. A complete model of the dimensioned powertrain and its control algorithm will be simulated in the Simulink environment and analyzed. The control algorithm for the motor will be uploaded onto a commercially available motor controller and the performance, and efficiency of the algorithm will be analyzed on a virtual motor and vehicle model using the processor in loop feature (PIL) of MATLAB Simulink. The objective is to study and develop an EV powertrain in Matlab/Simulink environment and to compare the performance of the designed powertrain and its control algorithm with that of existing benchmarks. The system gives various performance parameters of the electric motor and the battery pack by taking the drive cycle as the input.
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