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Analysis of a Novel Multi-Tooth Flux-Switching PM Brushless AC Machine for High Torque Direct-Drive Applications

机译:用于高转矩直接驱动应用的新型多齿磁通切换永磁无刷交流电机的分析

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摘要

A three-phase, multi-tooth flux-switching permanent magnet brushless ac machine is analyzed, its electromagnetic performance, viz., the phase flux-linkage and back-EMF waveforms, the self- and mutual-inductances, the cogging torque, the electromagnetic torque, and the torque-current characteristic, are predicted by 2-D and 3-D finite-element analyses and validated experimentally. Compared with a conventional flux-switching machine, a multi-tooth machine requires a significantly smaller volume of magnet material, since only half the number of permanent magnets is required, and it exhibits a higher torque density at low excitation currents as well as a lower torque ripple. However, since it saturates more quickly as the current is increased due to the higher armature reaction, and at very high electric loadings its torque capability is lower than that of a conventional flux-switching machine.
机译:分析了三相多齿磁通切换永磁无刷交流电机,其电磁性能,即相磁链和反电动势波形,自感和互感,齿槽转矩,通过2-D和3-D有限元分析预测电磁转矩以及转矩电流特性,并进行实验验证。与传统的磁通开关电机相比,多齿电机所需的磁铁材料体积要小得多,因为只需要一半数量的永磁体,并且在低励磁电流下表现出更高的扭矩密度,而更低的励磁电流则更低。转矩脉动。但是,由于由于较高的电枢反作用而随着电流增加而使其饱和更快,并且在非常高的电负载下,其转矩能力比常规的磁通开关机低。

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