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Calculation and measurement of eigenmodes for a canned switched reluctance machine

机译:固定开关磁阻电机的本征模的计算和测量

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A great disadvantage of switched reluctance machines is the heavy noise emitation, caused by the radial forces in the airgap, which excite the structure to vibrate. Especially the stator vibrations produce heavy noise, when the frequencies of the excited forces correspond to the eigenfrequencies of the stator. Every structure has its characterizing eigenfrequency and the corresponding shape of deformation, the eigenmode. For the development process of an electrical machine design it is important to know both. Not all eigenmodes will be excited by the radial forces due to the excitation of the windings. There are different methods to derive the eigenfrequencies and eigenmodes. The value of the frequencies can either roughly be estimated with analytical models for simple structures or determined with finite-element simulation (FEM) and validated with measurements. In this paper different analytical models are presented and compared with numerical solution and measurements.
机译:开关磁阻电机的一个很大的缺点是由气隙中的径向力引起的大量噪声发射,该径向力激发了结构振动。特别是当激振力的频率与定子的本征频率相对应时,定子振动会产生很大的噪声。每个结构都有其特征频率和相应的变形形状,即本征模。对于电机设计的开发过程,了解两者至关重要。由于绕组的激励,并不是所有的本征模都会被径向力激励。有不同的方法来导出本征频率和本征模。可以通过简单结构的分析模型粗略估算频率值,或者通过有限元仿真(FEM)确定频率值,并通过测量进行验证。本文提出了不同的分析模型,并与数值解和测量结果进行了比较。

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