基于空间矢量脉宽调制技术的五电平级联h桥逆变器

Zulkifilie Bin Ibrahim, Md Liton Hossain, M. Talib, R. Mustafa, N. Mahadi
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引用次数: 12

摘要

多电平逆变器带来了大功率、高性能工业驱动应用的巨大革命。最小化谐波失真是电力电子传动的一个具有挑战性的问题。开发合适的调制技术可以解决这一问题。在过去十年中建立了许多调制技术。其中,空间矢量脉宽调制(SVPWM)以其易于数字化实现、直流母线利用率高、THD低等优点得到广泛应用。传统的SVPWM由于每个三角形的切换状态数量不同,需要对每个三角形进行不同数量的准时计算逻辑计算和不同数量的查找表。本文提出了一种简单的SVPWM,其中每个三角形只提出了4个准时计算逻辑计算、4个主动切换状态和4个查找表。利用MATLAB/Simulink和origin 6.1对基于SVPWM技术的五电平级联h桥逆变器(CHBI)进行了建模和分析,该逆变器具有可扩展到任意电平的无源R-L负载。这些结果与其他较低水平的逆变器和以前建立的结果进行了比较。从这些结果来看,基于SVPWM的五级CHBI在THD方面表现出更好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A five level cascaded H-bridge inverter based on space vector pulse width modulation technique
Multilevel inverters brought a tremendous revolution in high power superior performance industrial drive applications. Minimizing harmonic distortion is a challenging issue for power electronic drive. This problem can be solved by developing suitable modulation technique. There are number of modulation techniques established in the last decade. Among them, the space vector pulse width modulation (SVPWM) is extensively used because of their easier digital realization, better DC bus utilization and lower THD. Conventional SVPWM requires different number of logical computations of on time calculations and different number of lookup table for each triangle due to having their different number of switching states. In this paper, a simple SVPWM is presented where proposed only four logical computations of on time calculation, four active switching states and four lookup table for each triangle. Five level cascaded h-bridge inverter (CHBI) based on SVPWM technique are modeled and analyzed by using MATLAB/Simulink and origin 6.1 with a passive R-L load that can be extended to any level. These results are compared with other lower levels of inverter and with previous established results. From these results, five level CHBI based on SVPWM shows better performance compared to others in terms of THD.
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