Symbiosis Between Torque Ripple and Vibrations of Large Electrically Excited Synchronous Motor

A. B. Asaf Ali, D. Casado-Valdes
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Abstract

The electrical machine is subjected to different parasitic effects. In this paper, two parasitic effects; torque ripple and vibrations as well as the interdependence between them are discussed. It is almost impossible to have an ideal electrical machine which has constant torque or zero vibrations. The radial and tangential flux densities distribution in space and time and modulation of the different permeances on radial and tangential flux density distributions are responsible for vibrations and torque ripple in electrical machines. In general, both the parasitic effects are denoted from which reference part (stator or rotor) they are considered. This is because both are generated from the same sources (the resultant flux density). When the parasitic effect on torque is influenced then the vibration of the electrical machine is also influenced. Both the parasitic effects are systematically approached for the electrical excited synchronous machine as used in industry applications. Finally, in this study, the response analysis is performed to determine the gap between the parasitic torque and vibrations. It is shown that the large electrical machine with higher number of poles does have the vibration with 4-node mode.
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大型电激同步电动机转矩脉动与振动的共生关系
电机受到各种寄生效应的影响。本文研究了两种寄生效应;讨论了转矩脉动和振动及其相互关系。几乎不可能有一台理想的电机具有恒定的扭矩或零振动。电机的振动和转矩脉动是由径向和切向磁通密度在空间和时间上的分布以及磁导率对径向和切向磁通密度分布的调制引起的。一般来说,寄生效应都是从参考部分(定子或转子)考虑的。这是因为两者都是由相同的来源(由此产生的磁通密度)产生的。当寄生力矩效应受到影响时,电机的振动也会受到影响。系统地探讨了工业用电励磁同步电机的两种寄生效应。最后,在本研究中,进行响应分析以确定寄生扭矩和振动之间的间隙。结果表明,极数较多的大型电机确实存在4节点振型。
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