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Two-Dimensional Field Analysis on Electromagnetic Vibration-and-Noise Sources in Permanent-Magnet Direct Current Commutator Motors

机译:永磁直流换向器电动机中电磁振动和噪声源的二维场分析

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摘要

This paper concerns the modeling of electromagnetic vibration-and-noise sources in permanent-magnet direct current (PMDC) commutator motors. The electromagnetic sources are considered as an electromagnetic field distributed in the air-gap region of a PMDC motor. The latter is then formulated by the two-dimensional field theory in polar coordinates with the consideration of slotting effects and the armature reaction field. Consequently, based on the derived radial electromagnetic field, the radial and tangential magnetic forces acting on the inner surface of the permanent magnets can be expressed as Fourier functions in forms of space and frequency harmonics. The results obtained from the present models agree well with those from the finite-element models. In addition, the measured cogging torque is compared to those calculated by the analytical and finite-element models to validate the formulated electromagnetic field and magnetic forces. Furthermore, experimental investigations are carried out on the electromagnetic vibration-and-noise behavior of a commonly used PMDC commutator motor (such as that in heating, ventilating, and air conditioning (HVAC) systems). By measuring the natural frequencies and the associated mode shapes of the stator, the relationships between the magnetic forces and the measured vibration-and-noise responses are discussed in the frequency domain.
机译:本文涉及永磁直流(PMDC)换向器电动机中电磁振动和噪声源的建模。电磁源被认为是分布在PMDC电机气隙区域中的电磁场。然后通过二维场论在极坐标系中考虑开槽效应和电枢反应场来制定后者。因此,基于导出的径向电磁场,作用在永磁体的内表面上的径向和切向磁力可以以空间和频率谐波的形式表示为傅立叶函数。从当前模型获得的结果与从有限元模型获得的结果非常吻合。此外,将测得的齿槽转矩与解析模型和有限元模型计算出的齿槽转矩进行比较,以验证公式化的电磁场和磁力。此外,对常用的PMDC换向器电动机(例如供暖,通风和空调(HVAC)系统中的电动机)的电磁振动和噪声行为进行了实验研究。通过测量固有频率和定子的相关模态形状,在频域中讨论了磁力与测得的振动和噪声响应之间的关系。

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