用GWO算法分析对称与非对称多电平逆变器

M. Z. Aihsan, M. I. Fahmi, M. Saifizi, W. Mustafa, H. F. Liew, A. Alkhayyat, A. Darghaoth
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引用次数: 1

摘要

本文介绍了一种采用减开关技术的单相多电平逆变器,在对称工作时产生9电平输出电压波形,在非对称工作时产生17电平输出电压波形。采用灰狼优化技术对各功率开关的发射角生成进行了调整。本研究的目的是研究所提出的多电平电路在实际硬件实现中处理不同电压注入形成对称和不对称操作的能力。与传统的需要32个功率开关的多电平拓扑结构相比,所提出的拓扑结构仅使用10个功率开关来输出17个电平的输出电压波形。功率开关的减少大大减少了转换器的尺寸以及控制器和驱动电路的功耗。通过MATLAB/Simulink软件和实验结果验证了该技术的可行性。结果将集中在谐波性能上,与对称配置相比,不对称配置的THD量要低得多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Symmetrical and Asymmetrical Multilevel Inverter using GWO Algorithm
This article presents a single-phase multilevel inverter with reduced switches technique to generate 9-level output voltage waveform during symmetric operation and 17-level output voltage waveform during asymmetric operation. The generation of firing angles for each power switches are tuned by using the Grey Wolf Optimization technique. The purpose of this study is to investigate the capability of the propose multilevel circuit on handling the different voltage injection to form the symmetrical and asymmetrical operation in a real hardware implementation. The proposed topology only used 10 units of power switches to from 17-level output voltage waveform compared to the conventional multilevel topology which requires 32 units of power switches. The reduction of power switches has significantly reduced the converter size as well as the power consumption for the controller and driver circuit. The feasibility of the proposed technique has been validated using MATLAB/Simulink software and through experimental results. The results will be focused on the harmonic performance and the amount of THD for asymmetrical is much lower compared to the symmetrical configuration.
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