High-speed synchronous machines: Magnetic pulling tensioning forces calculation approach

I. Z. Boguslavskiy, I. Kruchinina, Y. Khozikov, A. Liubimtcev
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引用次数: 3

Abstract

This paper presents the calculation approach acceptable for evaluation of magnetic pulling tensioning forces acting between the rotor and stator due to rotor eccentricity for choice of electromagnetic bearings for high-speed synchronous electrical machines, permanent magnet machines (PMSM). The aim of this research is to study these forces in no-load mode and in the rated mode. On the basis of the 2D electromagnetic field distribution using finite-element calculation the electromagnetic tensioning forces have been derived with accuracy sufficient for practical purposes. High spatial harmonics of resultant electromagnetic field of air gap magnetic flux density and saturation of magnetic circuit is taken into account. It has been determined that both the high spatial harmonics and saturation have an influence on the increasing of value of electromagnetic tensioning forces due to rotor eccentricity for different types of machines.
高速同步电机:磁力牵引张紧力计算方法
本文介绍了高速同步电机、永磁电机(PMSM)电磁轴承选择中,由于转子偏心而作用在转子和定子之间的磁拉张力的可接受的计算方法。本研究的目的是研究在空载模式和额定模式下的这些力。在二维电磁场分布的基础上,用有限元方法推导出了具有足够精度的电磁张紧力。考虑了气隙磁通密度和磁路饱和电磁场的高空间次谐波。对不同类型的电机,高空间谐波和饱和都对转子偏心引起的电磁张紧力值的增大有影响。
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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