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A Process to Reduce the Electromagnetic Vibration by Reducing the Spatial Harmonics of Air Gap Magnetic Flux Density

机译:通过减少空气间隙磁通密度的空间谐波来减少电磁振动的过程

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摘要

In this article, a process for reducing the electromagnetic vibration and noise by changing the shape of the stator is presented. Although the fundamental wave of the air gap magnetic flux density contributes to the average torque of the motor, other spatial harmonics which were except the fundamental wave of that cause vibration and enfeeble the output of the motor. Therefore, it is important to reduce the spatial harmonics for performance of the motor. Through the proposed process, it is possible to obtain an objective function to reduce the specific harmonics by assigning weights to each spatial harmonic. The reduction in the fundamental wave is minimized and it is possible to reduce the spatial harmonics that have an adverse impact on vibration. After the process, a model can be found that maintains the electromagnetic performance as much as possible while optimally reducing the vibration. To verify the process, the electromagnetic vibrations by a radial force of the proposed and conventional models were compared, and it was confirmed that the electromagnetic vibration of the proposed model was reduced. The validity of the analysis was proved through finite-element analysis.
机译:在本文中,提出了一种通过改变定子形状来降低电磁振动和噪声的过程。尽管空气间隙磁通密度的基波浪潮有助于电动机的平均扭矩,但除了该振动的基波外,其他空间谐波是导致振动的振动,并且对电动机的输出进行了影响。因此,重要的是减少用于电动机性能的空间谐波。通过所提出的过程,可以通过将权重分配给每个空间谐波来获得目标函数来减少特定谐波。基波波的减小最小化,可以减少对振动产生不利影响的空间谐波。在该过程之后,可以找到模型,其尽可能地保持电磁性能,同时最佳地减小振动。为了验证该过程,比较了所提出的和常规模型的径向力的电磁振动,并证实了所提出的模型的电磁振动减少。通过有限元分析证明了分析的有效性。

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