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Torque capabilities of a five-phase PM BLDC drive vs. a three-phase one and various supply modes

机译:三相PM BLDC驱动器的扭矩能力与三相一相和多种供电模式的扭矩能力

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Electric drives with a three-phase structure are commonly utilized in road vehicles for propulsion and in aeronautics as control-surface actuators. In recent times, some concerns have emerged on the use of three-phase drives in such applications in regard to power capability, efficiency and fault-tolerance. A way to effectively cope with these concerns is the adoption of multiphase drives. In this sense, a five-phase drive is a promising solution as it does not imply an excessively complicated structure. In this paper a five-phase PM BLDC drive is considered and its torque capabilities are investigated for square-wave current supply. Specifically, the torque developed by a five-phase drive is first compared to the three-phase counterpart; torque comparison is carried out by keeping motor size and loading unchanged and by considering two hypotheses: equal phase back-emf and equal phase rms current. Then the torque available from a five-phase drive is determined under various supply modes, characterized by the simultaneous conduction of a reduced number of phases; the torque available is determined by imposing an equal rms phase current in the supply modes.
机译:具有三相结构的电驱动器通常在公路车辆中用于推进,在航空航天中通常用作控制面执行器。近年来,在功率应用,效率和容错方面,在此类应用中使用三相驱动器已经引起了一些关注。有效解决这些问题的一种方法是采用多相驱动器。从这个意义上讲,五相驱动是一种有前途的解决方案,因为它并不意味着结构过于复杂。本文考虑了五相PM BLDC驱动器,并研究了其转矩能力以提供方波电流。具体来说,首先将五相驱动产生的扭矩与三相对应的扭矩进行比较;通过保持电动机尺寸和负载不变并考虑两个假设来进行转矩比较:相等的反电动势和相等的均方根电流。然后,在各种供电模式下确定可从五相驱动器获得的转矩,其特征是同时导通减少的相数。通过在供电模式中施加相等的均方根相电流来确定可用转矩。

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