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An SVM Approach for Five-Phase Current Source Converters Output Current Harmonics and Common-Mode Voltage Mitigation

机译:五相电流源转换器的SVM方法输出电流谐波和共模电压缓解

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摘要

In this article, an enhanced five-segment space vector modulation (SVM) approach is proposed for a five-phase current source converter (CSC) to simultaneously reduce its output current harmonics and common-mode voltage (CMV). To realize proper output current harmonics mitigation, the reference current vector is synthesized by adjacent four large vectors and one zero vector in the fundamental plane. At the same time, the dwell times of four adjacent large vectors are calculated to actively control the corresponding current projection in the third sequence plane. In addition, the zero vector is selected according to the ranking of the instantaneous filter capacitor voltage absolute value to reduce the peak CMV. Comparing to voltage source converter (VSC) counterparts where the CMV is not affected by the ac output voltage and current harmonic components, it is interesting to find that the CMV enveloping of the CSC has a strong connection with its third harmonic output current. Then, a sequence arrangement for the five-segment SVM approach is proposed to ensure only one switch action during vector states transition. Finally, a transformerlike loss model is established to evaluate the loss performance of the CSC with a different modulation approach and a vector sequence selection method.
机译:在本文中,提出了一种增强的五段空间矢量调制(SVM)方法,用于五相电流源转换器(CSC),以同时降低其输出电流谐波和共模电压(CMV)。为了实现适当的输出电流谐波缓解,参考电流矢量通过相邻的四个大向量和基本平面中的一个零向量合成。同时,计算四个相邻的大载体的停留时间以主动控制第三序列平面中的对应电流突起。另外,根据瞬时滤波器电容器电压绝对值的排名来选择零向量以减小峰值CMV。与电压源转换器(VSC)对应物相比,CMV不受交流输出电压和电流谐波分量的影响,有趣的是发现CSC的CMV包络具有强大的连接与其第三谐波输出电流。然后,提出了一种用于五段SVM方法的序列布置,以确保在向量状态转换期间仅进行一个切换动作。最后,建立变压器状损失模型以评估CSC的损耗性能,具有不同的调制方法和矢量序列选择方法。

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