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Analysis and Reduction of Cogging Torque for Flux-Switching Permanent Magnet Machines

机译:磁通开关永磁电机齿槽转矩的分析与减小

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摘要

In this article, a new modeling approach is proposed to investigate cogging torque and the corresponding reduction techniques of flux-switching permanent magnet (FSPM) machines. First, based on the superposition of each single rotor tooth, an analytical expression of cogging torque in FSPM machines is derived and confirmed by the finite-element analysis (FEA). Then, three feasible techniques, i.e., successively shifting rotor teeth, alternately shifting rotor teeth, and stepped skewing rotor blocks, are proposed for cogging torque minimization of FSPM machines. Correspondingly, generally analytical expressions of these three methods are deduced, through which the analytically optimal shifting angles can be determined. Besides, the cogging torque harmonics are analyzed by both analytical expressions and FEA, and then, the multidimensional techniques, namely three rotor-based reduction methods combined with the optimal stator tooth width, are introduced and studied to further suppress cogging torque. Finally, prototyped machines are manufactured and tested, and the corresponding experiments verify the effectiveness of the reduction methods.
机译:在本文中,提出了一种新的建模方法来研究齿槽转矩和磁通切换永磁(FSPM)电机的相应降低技术。首先,基于每个单个转子齿的叠加,得出FSPM机器中齿槽转矩的解析表达式,并通过有限元分析(FEA)进行确认。然后,提出了三种可行的技术,即连续地移位转子齿,交替地移位转子齿和步进偏斜转子块,以最小化FSPM机器的齿槽转矩。相应地,通常推导这三种方法的解析表达式,通过它们可以确定解析上最佳的移动角度。此外,通过解析表达式和有限元分析两种方法来分析齿槽转矩的谐波,然后引入多维技术,即结合最佳定子齿宽的三种基于转子的减速方法,进一步抑制齿槽转矩。最后,制造并测试了原型机,相应的实验验证了还原方法的有效性。

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