Computationally efficient skew effect calculation in electric machines utilising harmonic Maxwellian stress decomposition

C. Spargo, B. Mecrow, J. Widmer
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引用次数: 3

Abstract

A novel finite element solution post-processing technique to determine the effects of rotor skewing is presented in this paper. It was previously proposed that a post-processing semi-numerical method to calculate the harmonic torque components in synchronous machines is useful to machine designers. Harmonic Maxwellian stress components create parasitic effects during machine operation such as torque ripple, which is extremely undesirable in many applications and is a major cause of acoustic noise and vibration which can limit the machine's application. Rotor skewing usually allows reduction of this torque ripple and this paper expands previous work to include a good approximation of skewing effects using a single 2D time stepping Finite Element (FE) study with the developed post-processing method. The method reduces computation time for skew effect calculation where a large 3D FE simulation would usually be required.
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利用谐波麦克斯韦应力分解计算电机的有效偏斜效应
本文提出了一种确定转子偏斜影响的有限元解后处理方法。以前提出了一种计算同步电机谐波转矩分量的后处理半数值方法,这对机械设计人员很有帮助。谐波麦克斯韦应力分量在机器运行过程中产生寄生效应,例如扭矩脉动,这在许多应用中是非常不希望的,并且是噪声和振动的主要原因,可以限制机器的应用。转子歪斜通常允许减少这种转矩波动,本文扩展了以前的工作,包括使用单个二维时步有限元(FE)研究和开发的后处理方法对歪斜效应的良好近似。该方法减少了通常需要进行大型三维有限元模拟的倾斜效应计算的计算时间。
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