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Development of a consequent pole transverse flux permanent magnet linear machine with passive secondary structure

机译:具有被动二级结构的结果极横向磁通永磁直线电机的研制

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摘要

Transverse-flux machines have the advantage of high force density owing to the peculiarity of decoupling of electric loading and magnetic loading. In this paper, a novel consequent-pole transverse-flux permanent magnet linear machine (CP-TFPMLM) is proposed and investigated. The origination of the proposed machine is from an existing transverse-flux flux-reversal linear machine (TF-FRLM), by partially replacing permanent magnet poles with soft magnetic iron for further reducing the cost of magnets. The fundamental structure and operating principle are introduced at first. The electromagnetic performance, including back EMF, detent force, and thrust force, are investigated with the finite element method. The proposed machine can achieve similar performance as compared to the TF-FRLM but with half of the magnets are used.
机译:横向磁通机的优点是,由于电负载和磁负载解耦的特殊性,因此具有较高的力密度。本文提出并研究了一种新型的后极横磁通永磁直线电机(CP-TFPMLM)。所提出的机器的起源是从现有的横向磁通反向线性机器(TF-FRLM)出发,通过用软磁铁部分替代永磁极来进一步降低磁体成本。首先介绍其基本结构和工作原理。用有限元方法研究了电磁性能,包括反电动势,制动力和推力。与TF-FRLM相比,拟议中的机器可以实现类似的性能,但是只使用了一半的磁体。

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