九电平级联h桥变换器低次谐波的消除

A. Abrishamifar, M. Arasteh, F. Golshan
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引用次数: 0

摘要

与传统的双电平变换器相比,多电平变换器具有明显的优势,如更低的谐波失真、更低的开关频率、更低的开关损耗和更低的半导体开关应力。为了提高多电平变换器的输出质量,文献中提出了不同的调制技术。最适合大功率高压应用的调制技术是选择性谐波消除(SHE),因为它具有基频开关频率。本文提出了一种消除九电平CHB变换器低次谐波的简便方法。使用这种技术,不需要解决复杂的三角方程,因此,这种技术可以实现实时使用一个简单的处理器。此外,所有CHB模块都工作在基本开关频率下,并且它们之间的功耗相同。为了验证该方法的有效性,对一个三相九电平CHB逆变器进行了仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Elimination of low order harmonics in nine-level cascaded H-bridge converter
MULTILEVEL converters compare with the conventional two-level converters provide noticeable advantages such as lower harmonic distortion, lower switching frequency, lower switching losses, and lower stress across the semiconductor switches. To improve the output quality of multilevel converters, different modulation techniques have been suggested in the literature. The most suitable modulation technique for high-power high-voltage applications is selective harmonic elimination (SHE) due to having fundamental switching frequency. In this paper, a simple method for elimination of low order harmonics in nine-level CHB converter is proposed. Using this technique, there is no need to solve complex trigonometric equations and therefore, this technique can be implemented in real time using a simple processor. Furthermore, all CHB modules operate at the fundamental switching frequency and power consumption is shared identically among them. To demonstrate the validity of the proposed method, simulation for a three phase nine-level CHB inverter is presented.
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