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Fault-Tolerant Operation of Six-Phase Energy Conversion Systems With Parallel Machine-Side Converters

机译:带有并行机器侧转换器的六相能量转换系统的容错操作

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摘要

The fault tolerance provided by multiphase machines is one of the most attractive features for industry applications where a high degree of reliability is required. Aiming to take advantage of such postfault operating capability, some newly designed full-power energy conversion systems are selecting machines with more than three phases. Although the use of parallel converters is usual in high-power three-phase electrical drives, the fault tolerance of multiphase machines has been mainly considered with single supply from a multiphase converter. This study addresses the fault-tolerant capability of six-phase energy conversion systems supplied with parallel converters, deriving the current references and control strategy that need to be utilized to maximize torque/power production. Experimental results show that it is possible to increase the postfault rating of the system if some degree of imbalance in the current sharing between the two sets of three-phase windings is permitted.
机译:对于要求高度可靠性的工业应用,多相电机提供的容错能力是最吸引人的功能之一。为了利用这种故障后的操作能力,一些新设计的全功率能量转换系统正在选择三相以上的机器。尽管在高功率三相电气驱动器中通常使用并行转换器,但多相电机的容错性主要是通过多相转换器的单电源供电来考虑的。这项研究解决了带有并行转换器的六相能量转换系统的容错能力,得出了需要利用的电流基准和控制策略,以最大限度地提高扭矩/功率产生。实验结果表明,如果允许两组三相绕组之间的电流共享出现一定程度的不平衡,则可以提高系统的故障后额定值。

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