Realization of SVM Algorithm for Indirect Matrix Converter and Its Application in Power Factor Control

Gang Li
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引用次数: 5

Abstract

Compared with AC-DC-AC converter, matrix converter (MC) has several advantages for its bidirectional power flow, controllable power factor, and the absence of large energy storage in dc-link. The topology of MC includes direct matrix converter (DMC) and indirect matrix converter (IMC). IMC has received great attention worldwide because of its easy implementation and safe commutation. Space vector PWM (SVM) algorithm for indirect matrix converter is realized on DSP and CPLD platform in this paper. The control of the rectifier and inverter in IMC can be decoupled because of the intermediate dc-link. The space vector modulation scheme for IMC is discussed and the PWM sequences for the rectifier and inverter are generated. And a two-step commutation of zero current switching (ZCS) in the rectifier is achieved. Input power factor of IMC can be changed by adjusting the angle of the reference current vector. Experimental tests have been conducted on a RB-IGBT based indirect matrix converter prototype. The results verify the performance of the SVM algorithm and the ability of power factor correction.
间接矩阵变换器SVM算法的实现及其在功率因数控制中的应用
与AC-DC-AC变换器相比,矩阵变换器具有双向潮流、功率因数可控、dc链路不需要大储能等优点。MC拓扑结构包括直接矩阵变换器(DMC)和间接矩阵变换器(IMC)。IMC因其易于实现和安全转换而受到世界各国的广泛关注。本文在DSP和CPLD平台上实现了间接矩阵变换器的空间矢量PWM (SVM)算法。由于中间直流链路的存在,IMC中整流器和逆变器的控制可以解耦。讨论了IMC的空间矢量调制方案,并生成了整流器和逆变器的PWM序列。实现了整流器零电流开关(ZCS)的两步换相。通过调整参考电流矢量的角度,可以改变IMC的输入功率因数。在基于RB-IGBT的间接矩阵变换器样机上进行了实验测试。结果验证了支持向量机算法的性能和功率因数校正能力。
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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