Three-phase MLI with Reduced Number of Switches and Hybrid Optimized Switching

T. Hussein, D. Ishak
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Abstract

In this paper, a hybrid pattern consisting of the optimal features of the SMA algorithm, and the GA algorithm are used to calculate the optimal switching angles for a three-phase multi-level inverter (MLI). These angles are used to remove a selected number of unwanted harmonics, thus reducing the total harmonics distortion (THD) to a significant value. The topology for the three-phase MLI is used to operate the least number of switches to increase the efficiency compared to the traditional three-phase inverter. A 23-level three-phase inverter is investigated and simulated in MATLAB Simulink environment using resistive, inductive, and non-linear loads. The results are presented for the voltages and currents of the inverter and the load, as well as the frequency spectrum analysis to compare the THD values for the two algorithms and the hybrid pattern.
减少开关数量和混合优化开关的三相MLI
本文将SMA算法的最优特征与遗传算法相结合的混合模式用于计算三相多电平逆变器的最优开关角。这些角度用于去除选定数量的不需要的谐波,从而将总谐波失真(THD)降低到显著值。与传统的三相逆变器相比,三相MLI的拓扑结构采用了最少的开关操作数量来提高效率。在MATLAB Simulink环境下对一种23电平三相逆变器进行了电阻、电感和非线性负载的仿真研究。给出了逆变器和负载的电压和电流,以及频谱分析,比较了两种算法和混合模式的THD值。
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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