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Optimization of Modular SPM Machines Considering Stator Modularity

机译:考虑定子模块化的模块化SPM机器优化

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This paper presents the global optimization of modular surface-mounted permanent magnet machines considering the effect of stator modularity on machine electromagnetic performances. In order to optimize the electromagnetic performance, the multi-objective genetic algorithm is adopted and 2D finite element method is used. Variables such as stator yoke height, tooth width, flux gap width, split ratio and rotor yoke thickness have been selected for the optimization. The objectives are to achieve maximized average torque, minimized torque ripple, copper loss and total machine mass. Amongst all the variables, the flux gap width is a key parameter which has significant impact on machine electromagnetic performance, but has not been included in the optimization process in the literature. The results in this paper have shown that considering the flux gap width in the optimization will lead to further improvement in machine electromagnetic performance. In addition, for machines with lower slot number than rotor pole number, the optimization process shows that an appropriate flux gap width is needed for optimal electromagnetic performance. However, for machines with higher slot number than pole number, the flux gap width tends to be zero, leading to non-modular machine having the optimal performance.
机译:本文介绍了考虑定子模块化对机电磁性能的影响的模块化型永磁机的全局优化。为了优化电磁性能,采用多目标遗传算法,使用了2D有限元方法。已经选择了定子轭高度,齿宽,焊剂间隙宽度,分流比和转子轭厚度的变量进行优化。目标是实现最大化的平均扭矩,最小化的扭矩脉动,铜损和总机质量。在所有变量中,焊剂间隙宽度是对机器电磁性能的显着影响的关键参数,但尚未包含在文献中的优化过程中。本文的结果表明,考虑到优化中的焊剂间隙宽度将导致机器电磁性能的进一步提高。此外,对于比转子杆数更低的槽位的机器,优化过程表明,最佳电磁性能需要适当的焊剂间隙宽度。然而,对于具有比极数更高的槽位的机器,焊剂间隙宽度趋于为零,导致具有最佳性能的非模块化机器。

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