Harmonic Elimination in Uniform Step Nine-Level Inverter Using Differential Evolution: Experimental Validation

Rim Feyrouz Abdelgoui, R. Taleb, A. Bentaallah, F. Chabni
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Abstract

This study presents the application of differential evolution algorithm to compute optimal switching angles for a single-phase nine-level inverter to improve the output voltage quality. The topology of the proposed inverter in this article is a simple cascade converter composed of two H-bridge cells with non-equal DC voltage sources in order to generate multiple voltage levels. Selective harmonic elimination pulse width modulation strategy is used to improve the generated AC output voltage waveform. The differential evolution optimization algorithm is used to solve non-linear transcendental equations necessary for the (SHPWM). Computational results obtained from computer simulations presented a good agreement with the theoretical predictions. A laboratory prototype based on STM32F407 microcontroller was built in order to validate the simulation results. The experimental results show the effectiveness of the proposed modulation method.
基于差分进化的均匀步进九电平逆变器谐波消除:实验验证
本研究利用差分进化算法计算单相九电平逆变器的最佳开关角,以改善输出电压质量。本文提出的逆变器的拓扑结构是一个简单的级联变换器,由两个具有非相等直流电压源的h桥单元组成,以产生多个电压电平。采用选择性谐波消除脉宽调制策略,改善了产生的交流输出电压波形。采用微分进化优化算法求解非线性超越方程。计算机模拟计算结果与理论预测吻合较好。为了验证仿真结果,基于STM32F407单片机搭建了实验室样机。实验结果表明了该调制方法的有效性。
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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