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Impact of different control strategies on cycloconverter harmonic behavior

机译:不同控制策略对环变频器谐波特性的影响

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A cycloconverter is a power electronic converter which produces adjustable voltage adjustable frequency AC voltage from a constant voltage constant frequency AC source without any DC link. Cycloconverters produce significant harmonics and inter-harmonics in their output voltages. However harmonic behavior of cycloconverters widely depends on their pulse number, structure and switching strategy. Cycloconverter output voltage sub-harmonics, i.e. inter-harmonics with frequencies lower than fundamental frequency, greatly influence its performance and limit its maximum achievable output frequency. Several control strategies have been developed in years for reducing subharmonics and increasing cycloconverter performance quality. In this paper, two main control systems, i.e. cosine wave modulation and cosine wave modulation with voltage integral feedback are compared. Simulation results using MATLAB software are used to evaluate the analysis and signal THDs and harmonic components are calculated for further comparison. Experimental results obtained from a 6-pulse cycloconverter which was built in laboratory are used to evaluate the analysis.
机译:循环转换器是一种功率电子转换器,它可以从恒定电压恒定频率的交流电源产生可调电压,可调频率的交流电压,而无需任何直流回路。循环转换器在其输出电压中产生大量谐波和间谐波。但是,循环转换器的谐波特性在很大程度上取决于其脉冲数,结构和开关策略。循环转换器输出电压次谐波,即频率低于基频的次谐波,会极大地影响其性能并限制其最大可达到的输出频率。数年来,已经开发出了几种控制策略,用于减少次谐波并提高循环转换器的性能。本文比较了两个主要控制系统,即余弦波调制和带电压积分反馈的余弦波调制。使用MATLAB软件的仿真结果用于评估分析,并计算信号总谐波失真和谐波分量以供进一步比较。从实验室内置的6脉冲循环转换器获得的实验结果用于评估分析。

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