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A novel analytical method using virtual PM blocks to optimize magnet segmentations in surface-mounted PM synchronous machines

机译:一种使用虚拟PM块优化表面安装式PM同步电机中磁体分段的新颖分析方法

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Infinite numbers of virtual permanent magnet (PM) blocks can be used to represent the segmented magnets per magnet pole in any combination of slot and pole numbers of the semi-closed surface-mounted permanent magnet synchronous machines (PMSMs). This concept is exploited and developed in the two-dimensional (2D) analytical subdomain model to predict the motor performances. The model is able to facilitate the analytical investigation to determine the optimum magnet pole-arcs of each magnet segment and the optimum spacing between the magnet segments. This novel method is then applied to a three-phase, 12s/8p surface-mounted PMSM. It is found that for two segmented magnets (2SM) per magnet pole machine, the optimum settings are 147.6° elect. in each magnet pole and 11.2° elect. of airgap spacing between the magnet segments. By comparing the results to the optimum magnet pole-arc of one magnet segment (1SM) per magnet pole machine, the cogging torque and the total harmonic distortion of the phase back-EMF are significantly reduced by 89 % and 25 %, respectively, where both machines utilize the same PM volume. These analytical results are also validated by the 2D finite element method (FEM), where good agreement has been achieved.
机译:无限数量的虚拟永磁体(PM)块可用于表示半封闭式表面安装永磁同步电机(PMSM)的槽号和磁极号的任意组合中每个磁极的分段磁体。在二维(2D)分析子域模型中利用和开发了此概念,以预测电机性能。该模型能够促进分析研究,以确定每个磁体段的最佳磁极弧度以及磁体段之间的最佳间距。然后将此新颖方法应用于三相12s / 8p表面贴装PMSM。结果发现,对于每个磁极机器两个分段磁体(2SM),最佳设置为147.6°电动。在每个磁极中并选择11.2°角。磁体段之间的气隙间距。通过将结果与每台磁极机的一个磁段(1SM)的最佳磁极电弧进行比较,相电动势的齿槽转矩和总谐波畸变分别显着降低了89%和25%,其中两台机器使用相同的PM量。这些分析结果还通过2D有限元方法(FEM)进行了验证,该方法已经取得了良好的共识。

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