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Design considerations of switched reluctance motors: vibration and control issues

机译:开关磁阻电动机的设计注意事项:振动和控制问题

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The vibration produced in a switched reluctance motor (SRM) may be viewed from the manner radial component of the electromagnetic force and stator structure interact. Machine dimensions such as effective airgap length can alter the distribution of the radial attraction forces acting on the stator structure. In addition, design of the machine affects frequency characteristics of the stator. Furthermore, some design modifications of the machine geometry can provide more room for improvement in control of vibration during turn-off process. Therefore, in order to effectively mitigate the vibration in SRM drives, effects of motor dimensions on its vibratory behavior must be investigated. This paper examines the impact of various design parameters on the structural behavior of the stator body. Investigation of natural frequencies and the maximum deformation of the stator indicates that stator back iron and stator pole length are determining parameters in frequency response of the stator. Furthermore, using the finite element method, the impact of machine geometry on the profile of the radial attraction forces has been studied. The information obtained from this analysis is essential in development of a proper control strategy for mitigating vibration in SRM drives.
机译:开关磁阻电机(SRM)产生的振动可以从电磁力的径向分量与定子结构相互作用的方式来观察。机器尺寸(例如有效气隙长度)会改变作用在定子结构上的径向吸引力的分布。另外,电机的设计会影响定子的频率特性。此外,对机器几何形状的一些设计修改可以为关闭过程中的振动控制提供更大的改进空间。因此,为了有效减轻SRM驱动器中的振动,必须研究电动机尺寸对其振动行为的影响。本文研究了各种设计参数对定子本体结构性能的影响。对固有频率和定子最大变形的研究表明,定子背铁和定子磁极长度是确定定子频率响应的参数。此外,使用有限元方法,研究了机器几何形状对径向吸引力分布的影响。从此分析中获得的信息对于开发适当的控制策略以减轻SRM驱动器的振动至关重要。

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