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Analysis of the Operation Principle for Rotor-Permanent-Magnet Flux-Switching Machines

机译:转子-永磁式磁控开关机的工作原理分析

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This paper proposes a topology of special rotor-type permanent-magnet (PM) machine named rotor-PM flux-switching (RPM-FS) machine, which is evolved from stator-PM flux-switching (SPM-FS) topology and exhibits high power density, wide-range speed regulation, and good overload capability. The operation principle of RPM-FS machines is investigated based on the field modulation theory. It can be found that the torque is mainly contributed by the dominant harmonics in rotor-PM field and armature reaction field with the same order and rotating speed, i.e., 10, 14, and 34 pole pairs. In addition, a comprehensive comparison of modulation principles between the RPM-FS and SPM-FS machines is conducted from three perspectives, namely PM field, armature reaction field, and torque production mechanism. It is found that the modulation principle not only reveals the similarities of operation principle between two PM-FS machines, but also provides guidance for the combination of stator slots and rotor poles. Further, the electromagnetic torque produced by the dominant harmonics in two machines is verified by finite-element analysis and experiments.
机译:本文提出了一种特殊的转子型永磁(PM)电机的拓扑结构,称为转子-PM磁通量开关(RPM-FS)电机,它是从定子-PM磁通量开关(SPM-FS)拓扑结构演变而来的,具有很高的拓扑结构。功率密度大,调速范围广,过载能力强。基于场调制理论,研究了RPM-FS机的工作原理。可以发现,转矩主要由转子-PM场和电枢反作用场中具有相同阶次和转速(即10、14和34极对)的主导谐波贡献。此外,从PM磁场,电枢反作用磁场和转矩产生机理这三个角度对RPM-FS和SPM-FS电机之间的调制原理进行了全面比较。发现调制原理不仅揭示了两台PM-FS电机的工作原理的相似性,而且为定子槽和转子磁极的组合提供了指导。此外,通过有限元分析和实验验证了两台机器中由主谐波产生的电磁转矩。

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