气芯轴向磁通永磁电机的设计与损耗评估

O. Winter, C. Kral, E. Schmidt
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引用次数: 4

摘要

本文重点讨论了气芯轴向磁通电机绕组和哈尔巴赫磁体阵列焦耳损耗的不同计算方法。绕组损耗的经典方法(I)产生的涡流损耗没有接近效应,但对通过磁场具有感应电流。第二种方法(II)导出频率相关电阻,包括趋肤效应和接近效应,以计算脉宽调制(PWM)激励产生的高电流谐波引起的绕组损耗。通过计算磁体阵列中高次谐波引起的涡流,对两种不同的磁体内部焦耳损耗的装配策略进行了评价。根据这三种方法的结果,做出最终的设计决策。制造了一个全尺寸的轮毂电机原型,并对所选设计进行了测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and loss assessment of air cored axial flux permanent magnet machines
This paper focuses on different calculation methods of Joule losses in a winding and Halbach magnet arrays for air cored axial flux motors. The classical approach (I) for winding losses results in eddy current losses without proximity effect but with induced currents for the passing magnetic field. The second method (II) derives the frequency dependent resistance including skin and proximity effects to calculate the winding losses due to higher current harmonics generated by pulse width modulation (PWM) excitation. The calculation of eddy currents (III) induced by higher harmonics in the magnet array is used to evaluate two different assembly strategies concerning the joule losses within the magnets. Based on the results from these three methods, final design decisions were made. A full-scale prototype in-wheel hub motor was manufactured and measured to assess the chosen design.
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