Elimination of Common-Mode Voltage in Dual Two-Level Voltage Source Inverter Fed Open-End Load Using a Discontinuous SVM Technique

Nuttawout Buarat, Y. Kumsuwan
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Abstract

While the utilization of a two-level voltage source inverter (VSI) with a single de supply fed ac loads such as ac motor drives, it also causes some problems, among which the common-mode voltage (CMV) cannot be ignored in drive systems, the mitigation or zero CMV control is necessary for proper operation. This paper proposes a discontinuous space vector modulation (SVM) technique to eliminate the CMV of a dual two-level VSI with two isolated de supplies fed open-end load applications. This technique uses five-segment switching sequence design with centralizing PWM scheme to generate the discontinuous modulating waves for both inverters, resulting in reduces the step and peak value of the CMV of each inverter and also is that it can cancel the CMV at the open-end load to zero. Simulation results validate the effectiveness of the proposed technique.
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基于不连续支持向量机技术的双双电平电压源逆变器馈电开放式负载共模电压消除
在采用双电平电压源逆变器(VSI)与交流电机驱动等单断供交流负载的同时,也会产生一些问题,其中共模电压(CMV)在驱动系统中不可忽视,降低或零CMV控制是正常运行的必要条件。本文提出了一种不连续空间矢量调制(SVM)技术,以消除具有两个隔离电源供电的开放式负载应用的双双电平VSI的CMV。该技术采用五段开关序列设计和集中式PWM方案,为两个逆变器产生不连续调制波,从而使每个逆变器的CMV阶跃和峰值降低,并且可以将开放端负载处的CMV取消为零。仿真结果验证了该方法的有效性。
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