Comparison of Conventional and Modified Direct Torque Control of Three-Phase Induction Motor Using Three-Level Flying Capacitor Inverter

Amirah J. Mohammed, R. Hassan
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引用次数: 10

Abstract

The work presented in this paper aims to compare the effectiveness of different control strategies to improve the performance of the three-phase Induction Motor (IM). The Conventional Direct Torque Control (CDTC) was employed as the first strategy for driving the IM. This control strategy causes high ripples in the IM's torque and speed due to the hysteresis comparators and a variable switching frequency due to the look-up table. A modified DTC strategy based on Space Vector Modulation (DTC-SVM) was chosen as a second strategy to enhance the performance of the IM using the two-level inverter. This method, which leads to the reduction of the torque and speed ripples and achieves constant switching frequency. As the multi-level inverter becomes most popular than the two-level inverter, the third strategy is devoted to adopting the three-level flying capacitor inverter (TLFCMLI) -based DTC-SVM. The third strategy uses the method of mapping the multi-level space vector based on basic two-level SVM. Matlab/Simulink software package is utilized to implement the suggested controllers. Simulation results show that the DTC-SVM based on TLFCMLI significantly enhances the IM's performance compared with the other two strategies from the voltage and current profiles, torque, and speed points of view.
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三电平飞电容逆变器对三相异步电动机直接转矩控制的常规与改进比较
本文的工作旨在比较不同控制策略在提高三相异步电动机性能方面的有效性。采用常规直接转矩控制(CDTC)作为驱动IM的第一策略。由于迟滞比较器和查找表的可变开关频率,这种控制策略导致IM的转矩和速度产生高波纹。采用基于空间矢量调制(DTC- svm)的改进DTC策略作为第二种策略来提高双电平逆变器IM的性能。该方法减小了转矩和转速波动,实现了开关频率恒定。随着多电平逆变器比两电平逆变器更受欢迎,第三种策略致力于采用基于三电平飞电容逆变器(TLFCMLI)的DTC-SVM。第三种策略采用基于基本两级支持向量机的多层次空间向量映射方法。利用Matlab/Simulink软件包实现所建议的控制器。仿真结果表明,与其他两种策略相比,基于TLFCMLI的DTC-SVM在电压和电流分布、转矩和速度方面的性能都有显著提高。
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CiteScore
5.90
自引率
0.00%
发文量
22
期刊介绍: International Journal of Electrical and Electronic Engineering & Telecommunications. IJEETC is a scholarly peer-reviewed international scientific journal published quarterly, focusing on theories, systems, methods, algorithms and applications in electrical and electronic engineering & telecommunications. It provide a high profile, leading edge forum for academic researchers, industrial professionals, engineers, consultants, managers, educators and policy makers working in the field to contribute and disseminate innovative new work on Electrical and Electronic Engineering & Telecommunications. All papers will be blind reviewed and accepted papers will be published quarterly, which is available online (open access) and in printed version.
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