基于升压型PWM交流矩阵-电抗斩波器的矩阵-电抗变频器稳态与暂态分析

I. Korotyeyev, Z. Fedyczak, P. Szcześniak
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引用次数: 11

摘要

本文研究了一种三相矩阵-电抗变频器(MRFC)。所分析的MRFC拓扑结构是基于升压矩阵-电抗斩波器(MRC)和负载同步连接开关(LSCS)设置在升压矩阵变换器(MC)中。所讨论的MRFC使获得远大于输入电压的负载输出电压成为可能。本文介绍了一种分析磁流变材料稳态和瞬态特性的新方法。提出了基于d-q变换的求解非平稳方程的解析方法,并将其作为状态空间平均法的数学模型应用于所讨论的MRFC分析。对经典的文丘里尼控制策略进行了分析。为了验证理论分析的正确性,给出了仿真试验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Steady and transient state analysis of a matrix-reactance frequency converter based on a boost PWM AC matrix-reactance chopper
This paper deals with a three-phase matrix-reactance frequency converter (MRFC). The analysed MRFC topology is based on the boost matrix-reactance chopper (MRC) with a load synchronous connected switch (LSCS) set arranged as in the step-up matrix converter (MC). The MRFC in question makes it possible to obtain a load output voltage much greater than the input voltage. Presented in this paper is a description of a new method for the analysis of the steady and transient state properties of the presented MRFC. The analytical method based on d-q transformation is proposed for solving non-stationary equations, which we derive as a mathematical model of the state-space averaged method applying to the analysis of the discussed MRFC. The analysis results are obtained for a classical Venturini control strategy. Furthermore, for the verification of the theoretical analysis the simulation test results are also presented.
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