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首页> 外文期刊>International journal of electrical power and energy systems >Large virtual voltage vectors for direct controllers in six-phase electric drives
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Large virtual voltage vectors for direct controllers in six-phase electric drives

机译:用于六相电动驱动器中的直接控制器的大型虚拟电压矢量

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The appearance of virtual voltage vectors (VVs) has simultaneously provided two attractive features for multiphase drives: a simple and effective regulation of the x -y currents and a natural fault tolerance that avoids any control reconfiguration after an open-phase fault occurrence. VVs in six-phase drives were initially constructed using large and medium-large voltage vectors, and all subsequent works adopted this procedure without contemplating other alternatives. The use of medium-large vectors limits however the utilization of the dc-link voltage and brings undesired switching harmonics. This work goes back to the initial definition of the VVs and suggests using exclusively large (adjacent) voltage vectors to create the newly proposed large virtual voltage vectors (LVVs). Experimental results confirm that LVVs provide better current quality, lower switching frequency and better dc-link voltage utilization than standard VVs.
机译:虚拟电压矢量(VVS)的外观同时为多相驱动器提供了两个有吸引力的功能:简单有效地调节X-M电流和自然容错,避免在开放相故障发生之后的任何控制重新配置。六相驱动器中的VVS最初使用大中大电压矢量构造,并且所有后续工程都采用了此过程而不考虑其他替代方案。使用中大型矢量限制但利用直流链路电压并带来不期望的切换谐波。这项工作返回到VVS的初始定义,并建议使用专门的大(相邻)电压矢量来创建新提出的大虚拟电压矢量(LVV)。实验结果证实,LVVS提供了更好的电流质量,更低的开关频率和比标准VV的更好的直流链路电压利用率。

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