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On the analysis and reduction of the cogging torque of a claw pole transverse flux permanent magnet machine

机译:爪极横向磁通永磁电机齿槽转矩的分析与减小

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摘要

The transverse flux permanent magnet machine (TFPM) is currently given an increasing attention, especially in electric and hybrid propulsion applications. Although significant improvements have been carried out on the earlier topologies, much work is still required before the TFPM can be regarded as a mature concept. Of particular interest is the cogging torque reduction which is a vital requirement in propulsion applications, as far as passenger comfort is concerned. The present paper deals with, in a first step, a three-dimensional (3D) finite element analysis (FEA)-based investigation of the cogging torque of a claw pole TFPM. Then, an approach to the cogging torque reduction based on skewing is proposed. This is done considering a single-phase TFPM concept. Then, the study is extended to the three-phase claw pole TFPM, considering different combinations of the axially-arranged phases.
机译:横向磁通永磁电机(TFPM)目前受到越来越多的关注,特别是在电力和混合动力推进应用中。尽管已经对早期拓扑进行了重大改进,但在将TFPM视为成熟概念之前,仍需要进行大量工作。特别令人关注的是齿槽转矩的降低,就乘客的舒适度而言,这是推进应用中的一项至关重要的要求。本文首先涉及基于三维(3D)有限元分析(FEA)的爪极TFPM齿槽转矩研究。然后,提出了一种基于偏斜减小齿槽转矩的方法。考虑单相TFPM概念即可完成此操作。然后,考虑到轴向排列的相的不同组合,将研究扩展到三相爪形磁极TFPM。

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