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Reduction of eddy-current losses by circumferential and radial PM segmentation in axial flux permanent magnet machines with fractional-slot concentrated winding

机译:在带有分数槽集中绕组的轴向磁通永磁电机中,通过周向和径向PM分段减少涡流损耗

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Eddy current loss is a typical problem in permanent magnet machines especially in machines equipped with fractional-slot concentrated windings. PM segmentation which cut the circulating path of eddy current in radial flux PM machines have been widely studied in literature to reduce this loss. Both circumferential and axial magnet segmentations were evaluated by an analytical method concerning the skin effect in [1], and it was pointed that PM segmentation may increase rather than reduce the eddy current losses when skin depth is smaller than pole-arc width and magnet thickness. The influence due to the rotor shape in the loss-reduction effect is studied by the 3D finite-element analysis considering PWM carrier harmonics in [2]. Analytical calculation of eddy current loss due to space harmonics has been given in [3-5] to investigate the effect of circumferential or axial PM segmentation for loss reduction. The reported analytical methods to calculate eddy current losses were validated by 2-D time-stepping finite element (FE) analysis [3, 4] and by 3-D magneto-static FE analysis[5], for cases when skin depth at the frequency of interest is greater than both pole-arc and radial dimensions of magnets.
机译:涡流损耗是永磁电机中的一个典型问题,尤其是在配备分数槽集中绕组的电机中。为了减少这种损失,在文献中已广泛研究了在径向通量永磁电机中切开涡流循环路径的永磁分段。通过关于[1]中集肤效应的分析方法对周向和轴向磁体分段进行了评估,并指出当表皮深度小于极弧宽度和磁体厚度时,PM分段可能会增加而不是减小涡流损耗。在[2]中,通过考虑PWM载波谐波的3D有限元分析,研究了转子形状对降低损耗效果的影响。在[3-5]中已经给出了由空间谐波引起的涡流损耗的解析计算,以研究圆周或轴向PM分段对减小损耗的影响。对于2-D时间步长有限元(FE)分析[3,4]和3-D静磁FE分析[5]验证了所报道的用于计算涡流损耗的分析方法,以用于在感兴趣的频率大于磁体的极弧和径向尺寸。

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