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Indirect Space-Vector-Based Modulation Techniques for High-Power Multimodular Matrix Converters

机译:高功率多模矩阵转换器的基于空间矢量的间接调制技术

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摘要

Combining concepts of traditional multilevel converter and matrix converter (MC), the multimodular MCs (MMMCs) have reached the medium-voltage high-power level. These topologies possess features such as elimination of dc components and are able to output high-quality multilevel waveforms. Due to the MMMC's particular topological structure, modulation strategies for the conventional converters cannot be directly adopted. This necessitates the design of specially tailored modulation schemes for them to generate sinusoidal input/output waveforms. In this paper, indirect space-vector-based modulation techniques are proposed for the MMMCs. The study begins by establishing an indirect circuit model for the three-module MMMC topology, before using space vector calculations to derive duty ratios for the model's rectification and inversion stages. As the inversion stage can be viewed as multiple sets of three-phase outputs, its switching states and duty ratios are then converted and combined with those from the rectification stage. Finally, the gating signals are produced according to two switching patterns. As demonstrated by simulation and experimental results, the presented modulation techniques can generate sinusoidal waveforms with variable frequency and magnitude, as well as adjustable angle and power factor. The superiority of the second switching pattern is also proved by the obtained results.
机译:结合传统多电平转换器和矩阵转换器(MC)的概念,多模块MC(MMMC)已达到中压大功率水平。这些拓扑具有消除直流分量等功能,并能够输出高质量的多电平波形。由于MMMC的特殊拓扑结构,常规转换器的调制策略无法直接采用。这就需要设计专门定制的调制方案,以使其产生正弦输入/输出波形。在本文中,提出了基于间接空间矢量的调制技术。这项研究首先为三模块MMMC拓扑建立一个间接电路模型,然后使用空间矢量计算得出该模型的整流和反演阶段的占空比。由于反相阶段可以看作是多组三相输出,因此其转换状态和占空比将被转换并与整流阶段的输出状态和占空比组合。最后,根据两个开关模式产生门控信号。如仿真和实验结果所示,所提出的调制技术可以生成具有可变频率和幅度以及可调角度和功率因数的正弦波形。获得的结果也证明了第二切换模式的优越性。

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