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A new fault-tolerant flux-reversal doubly-salient magnetless motor drive with four-phase topology

机译:具有四相拓扑结构的新型容错磁通反向双凸极无磁电机驱动器

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The proposed fault-tolerant flux-reversal doubly-salient (FT-FRDS) magnetless motor drive consists of armature winding for driving and DC-field winding for field excitation. The purpose of this paper is to investigate two remedial strategies for fault-tolerant operations of the proposed motor drive under short-circuit faults. First, short-circuit phase can be disabled and the short-circuit fault can then be regarded as the open-circuit fault. By reconstructing the healthy armature phases, the reduced torque can be remedied and this is known as the fault-tolerant brushless AC (FT-BLAC) operations. Second, short-circuit fault can also be remedied based on the DC-field regulation alone, and this is known as the fault-tolerant DC-field (FT-DC) operation. These two remedial operations are compared and verified by the finite-element-method (FEM).
机译:拟议的容错磁通反向双凸极(FT-FRDS)无磁电机驱动器包括电枢绕组和直流励磁绕组,其中电枢绕组用于驱动,直流磁场绕组用于励磁。本文的目的是研究在短路故障下提出的电动机驱动器的容错操作的两种补救策略。首先,可以禁用短路相位,然后将短路故障视为开路故障。通过重构健康的电枢相位,可以弥补降低的转矩,这被称为容错无刷交流(FT-BLAC)操作。其次,短路故障也可以仅基于直流磁场调节来补救,这被称为容错直流磁场(FT-DC)操作。通过有限元方法(FEM)对这两个补救操作进行了比较和验证。

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