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Design and Optimization of a High Power Density Machine for Flooded Industrial Pump

机译:淹水工业泵大功率密度机的设计与优化

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This paper presents the design optimization procedure of a high power-density, permanent magnet synchronous machine for industrial pump applications. The designed machine drives an electric, oil flooded pump. In order to achieve higher torque-density, a fractional slot machine (8 poles, 9 slots) with double layer (concentrated) winding has been selected after a preliminary trade-off study, which considered several slot/pole combinations and winding configurations. The developed machine provides low torque ripple and short end windings, which contribute to lower axial length and higher efficiency. The electromagnetic performances have been evaluated by using finite element method and the lamination geometry has been optimized through a genetic. The final results are presented highlighting the achieved design targets.
机译:本文介绍了高功率密度,永磁同步机用于工业泵应用的设计优化步骤。设计的机器驱动电动油淹水泵。为了实现更高的扭矩密度,在初步折衷的研究之后,选择了具有双层(集中)绕组的分数槽机(8杆,9个槽),其考虑了几个槽/极组合和绕组配置。开发机提供低扭矩纹波和短端绕组,这有助于较低的轴向长度和更高的效率。通过使用有限元方法评估了电磁性能,并且通过遗传算法优化了层压几何形状。提出了最终结果,突出了实现的设计目标。

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