Elimination/Mitigation of Output Voltage Harmonics for Multilevel Converters Operated at Fundamental Switching Frequency using Matlab's Genetic Algorithm Optimization

A. Kersten, Manuel Kuder, A. Singer, Weiji Han, T. Thiringer, T. Weyh, Richard Eckerle
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引用次数: 1

Abstract

This paper deals with the optimization of the output voltage waveform of a multilevel converter operated with fundamental frequency switching. For a high number of output voltage levels, nearest-level control is typically used, whereas an optimized waveform can be presumably used to eliminate a selection of low order harmonics. A nonlinear optimization problem for any kind of multilevel inverter, operating in a single or three-phase arrangement, is formulated. It is shown that the set of nonlinear equations, defining this optimization problem, cannot be numerically solved, if the number of output voltage levels is higher than nine. Thus, an optimization algorithm, e.g., Matlab's genetic algorithm, should be used instead. Based on the concept of the weighted THD, it is shown that an optimized waveform has no effect on the output current's quality of a single phase multilevel converter. However, considering an ungrounded three-phase system, the content of the to be eliminated harmonic components is shifted towards the triplen harmonics and, consequently, the expected current quality, based on the WTHD, can be significantly improved.
基于Matlab遗传算法优化的基频多电平变换器输出电压谐波消除/缓解
本文研究了基频开关多电平变换器输出电压波形的优化问题。对于高数量的输出电压电平,通常使用最接近电平控制,而优化波形可以用来消除低阶谐波的选择。对任意一种多电平逆变器,不论是单电平还是三相电平,都提出了非线性优化问题。结果表明,当输出电压电平数大于9时,定义该优化问题的非线性方程组不能用数值方法求解。因此,应该使用优化算法,例如Matlab的遗传算法。基于加权THD的概念,优化后的波形对单相多电平变换器的输出电流质量没有影响。然而,考虑到不接地的三相系统,要消除的谐波分量的含量向三次谐波转移,因此,基于WTHD的预期电流质量可以显着提高。
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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