Design and performance analysis of fuzzy logic-based speed controller for DTC of VSI fed IPMSM drives

Salma Charmi, B. E. Badsi, A. Yangui
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Abstract

Fuzzy set theory has gained great attention for many researchers due to its several advantages in the area of power electronic systems control. This paper describes the direct torque control of voltage source inverter fed interior permanent magnet Brushless AC motor drives, considering a fuzzy logic-based speed controller which offers robustness against reference speed and/or load torque disturbance effects. In this research study, according to speed error and its first time derivative, the proportional and integral gains of the speed controller are online adjusted. A simulation-based comparative study between the performance of the proposed speed controller and the conventional one, has highlighted the superiority of the developed controller which exhibits fast dynamic response, more robustness and less steady-state error especially when there exist motor parameter uncertainties and unexpected load changes occur.
基于模糊逻辑的VSI馈电永磁同步电机直接转矩控制器的设计与性能分析
模糊集理论由于其在电力电子系统控制领域的诸多优点而受到了许多研究者的重视。本文描述了电压源逆变器馈入的内部永磁无刷交流电机驱动器的直接转矩控制,考虑了基于模糊逻辑的速度控制器,该控制器对参考速度和/或负载转矩干扰影响具有鲁棒性。在本研究中,根据速度误差及其一阶导数,在线调整速度控制器的比例增益和积分增益。通过与传统速度控制器性能的仿真对比研究,表明所设计的速度控制器具有动态响应快、鲁棒性强、稳态误差小的优点,特别是在存在电机参数不确定性和负载发生意外变化的情况下。
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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