Sensitivity Analysis of Parameters Affecting the Performance of Radial Flux Low-Speed PMSG

W. Ghoneim, A. Hebala, H. Ashour
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引用次数: 5

Abstract

This paper is committed to build a comprehensive understanding of the different design possibilities, working closely with inner-rotor, radial-flux, permanent magnet synchronous generator (RF-PMSG). Design parameters, such as steel grade, segmenting and over-hanging PM, air-cored rotor and skewing angles are all taken into consideration. A detailed parametric analysis - based on Finite-Element-Method (FEM) software - is carried out in order to study different scenarios of PMSG designs. Accordingly, the FEM method is used to evaluate and quantify the variation of the flux density, output power, cogging torque, and power density for different design variations. The aim as well is to develop an enhanced performance at reduced material and manufacturing costs. The results showed a promising modified PMSG design, where both the shape of PM and the structure of its stator and rotor are changed.
影响径向磁通低速永磁同步电机性能参数的灵敏度分析
本文致力于建立一个全面的了解不同的设计可能性,与内转子,径向磁通,永磁同步发电机(RF-PMSG)密切合作。设计参数,如钢的等级,分段和悬垂PM,空心转子和偏斜角都考虑在内。基于有限元软件进行了详细的参数化分析,研究了不同工况下PMSG的设计。基于此,采用有限元法对不同设计工况下的磁通密度、输出功率、齿槽转矩和功率密度的变化进行了评价和量化。其目的也是在减少材料和制造成本的情况下开发出更高的性能。结果表明,改进的永磁同步电动机设计方案不仅改变了永磁同步电动机的形状,而且改变了其定子和转子的结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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