用于STATCOM应用的7电平级联多电平逆变器的电平移位SPWM

Suruchi Agarwal, S. R. Deore
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引用次数: 8

摘要

多年来,多电平逆变器在电机驱动、静态无功补偿器和可再生能源系统等工业应用中越来越受欢迎。与双电平逆变器相比,多电平逆变器已经受到了这种关注,因为它承诺更少的干扰,并且能够在低开关频率下工作。在提出的许多多电平逆变器拓扑中,级联多电平逆变器(CMI)具有较高的模块化程度,因为每个逆变器都可以视为具有相似电路拓扑,控制结构和调制的模块。级联多电平逆变器虽然有很多优点,但其主要缺点是直流电容间电压不平衡。本文探讨了级联式多电平逆变器的基本结构和工作原理。总结了常用的调制技术。本文还介绍了相配置(PD)和相反对配置(POD) SPWM技术以及模块电压平衡算法,如级联多电平逆变器的排序策略。比较了PD和POD SPWM技术的THD。在PD-SPWM技术中,由于相开关函数的半波不对称性,逆变器的输出电压中含有均匀谐波分量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Level shifted SPWM of a seven level cascaded multilevel inverter for STATCOM applications
Multilevel inverters had gain popularity over the years in industrial applications such as motor drives, static var compensators and renewable energy systems. Multilevel inverters have received this attention as it promises fewer disturbances and are capable to function at low switching frequency as compared to two level inverters. Out of many multilevel inverter topologies proposed, Cascaded Multilevel Inverter (CMI) features a high modularity degree because each inverter can be seen as a module with similar circuit topology, control structure and modulation. With large number of advantages, cascaded multilevel inverter has one major limitation of voltage unbalance across the dc capacitors. This paper explores basic structure and operating principle of cascaded multilevel inverter. Common modulation techniques are summarized. This paper also presents Phase Disposition (PD) and Phase Opposition Disposition (POD) SPWM techniques along with module voltage balancing algorithm such as sorting strategy for a cascaded multilevel inverter. The THD of PD and POD SPWM techniques are compared. For PD-SPWM technique, it is observed that the output voltage of inverter contains even harmonic components because of half wave unsymmetry in phase switching function.
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