Critical Aspects of Electric Motor Drive Controllers and Mitigation of Torque Ripple—Review

开关磁阻电动机 直接转矩控制 动力传动系统 有刷直流电动机 电动机驱动 转矩脉动 电动机 计算机科学 扭矩 汽车工程 病媒控制 控制工程 感应电动机 交流电动机 工程类 电压 转子(电动) 电气工程 热力学 机械工程 物理
作者
Deepak Mohanraj,Janaki Gopalakrishnan,C. Bharatiraja,Lucian Mihet-Popa
出处
期刊:IEEE Access [Institute of Electrical and Electronics Engineers]
卷期号:10: 73635-73674 被引量:5
标识
DOI:10.1109/access.2022.3187515
摘要

Electric vehicles (EVs) are playing a vital role in sustainable transportation. It is estimated that by 2030, Battery EVs will become mainstream for passenger car transportation. Even though EVs are gaining interest in sustainable transportation, the future of EV power transmission is facing vital concerns and open research challenges. Considering the case of torque ripple mitigation and improved reliability control techniques in motors, many motor drive control algorithms fail to provide efficient control. To efficiently address this issue, control techniques such as Field Orientation Control (FOC), Direct Torque Control (DTC), Model Predictive Control (MPC), Sliding Mode Control (SMC), and Intelligent Control (IC) techniques are used in the motor drive control algorithms. This literature survey exclusively compares the various advanced control techniques for conventionally used EV motors such as Permanent Magnet Synchronous Motor (PMSM), Brushless Direct Current Motor (BLDC), Switched Reluctance Motor (SRM), and Induction Motors (IM). Furthermore, this paper discusses the EV-motors history, types of EV-motors, EV-motor drives powertrain mathematical modelling, and design procedure of EV-motors. The hardware results have also been compared with different control techniques for BLDC and SRM hub motors. Future direction towards the design of EV by critical selection of motors and their control techniques to minimize the torque ripple and other research opportunities to enhance the performance of EVs are also presented.

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