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A New SVM Method to Reduce Common-Mode Voltage of Five-leg Indirect Matrix Converter Fed Open-End Load Drives

机译:降低五脚间接矩阵转换器馈入式开放式负载驱动器共模电压的SVM新方法

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摘要

This paper proposes a cost-effective topology to drive a three-phase open-end load based on a five-leg indirect matrix converter (IMC) and a space vector modulation (SVM) method. By sharing an inverter leg with two load terminals, the proposed topology can reduce the number of power switches when compared to topologies based on a direct matrix converter or a six-leg IMC. The new SVM method uses only the active vectors that do not produce common-mode voltage (CMV), which results in zero CMV across the load phase and significantly reduces the peak value of the CMV at the load terminal. Furthermore, the proposed drive system can increase the voltage transfer ratio up to 1.5 and provide a superior performance in terms of an output line-to-line voltage with a three-level pulse-width modulation waveform. Simulation and experimental results are given to verify the effectiveness of the proposed topology and the new SVM method.
机译:本文提出了一种具有成本效益的拓扑结构,该拓扑结构基于五臂间接矩阵转换器(IMC)和空间矢量调制(SVM)方法来驱动三相开放式负载。通过与两个负载端子共享一个逆变器支路,与基于直接矩阵转换器或六支路IMC的拓扑相比,拟议的拓扑可以减少电源开关的数量。新的SVM方法仅使用不会产生共模电压(CMV)的有效矢量,这将导致整个负载相位CMV为零,并显着降低负载端CMV的峰值。此外,提出的驱动系统可以将电压传输比提高到1.5,并在具有三电平脉冲宽度调制波形的输出线间电压方面提供出色的性能。仿真和实验结果证明了所提出的拓扑结构和新的支持向量机方法的有效性。

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