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Eddy-Current Calculation of Solid Components in Fractional Slot Axial Flux Permanent Magnet Synchronous Machines

机译:分数槽轴向磁通永磁同步电机中固体成分的涡流计算

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摘要

This paper investigates eddy-current in an axial flux permanent magnet (AFPM) machine, which consist of the segmented stator teeth and concentrated winding, with one inner rotor and double stators. Analytical methods was developed to calculate the eddy-current loss of PMs and other solid components, including effect of winding harmonics and permeance variation due to slot opening. Eddy-current losses were analyzed by time-stepping three dimensional finite element analysis (3D FEA) in two rotor models, when magnets are insulated or noninsulated. A prototype machine was manufactured based on analysis results, and was tested as a generator. It is found that rotor stainless PM holder should be used in order to reduce eddy-currents and insulation of PMs further reduces eddy-current losses.
机译:本文研究了轴向磁通永磁体(AFPM)电机中的涡流,该电机由分段定子齿和集中绕组组成,具有一个内部转子和两个定子。开发了分析方法来计算PM和其他固体成分的涡流损耗,包括绕组谐波的影响和由于开槽而引起的磁导率变化。当磁体处于绝缘或非绝缘状态时,通过在两个转子模型中采用时步三维有限元分析(3D FEA)来分析涡流损耗。根据分析结果制造了原型机,并作为发电机进行了测试。发现应使用转子不锈钢PM支架以减少涡流,而PM的绝缘进一步降低了涡流损耗。

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