永磁同步电动机齿槽转矩诱发振动分析

Unai Galfarsoro, J. Parra, A. McCloskey, S. Zarate, Xabier Hernández
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引用次数: 2

摘要

电机的噪音和振动是一个主要关注的应用,舒适性是一个重要的方面。有几种故障可能出现在机器增加噪音和振动。齿槽故障是永磁同步电机的主要故障之一。为了检测不符合质量要求的机器,需要有齿槽诊断工具。在参考书目中发现的评估齿槽的常用方法是电机电流特征分析(MCSA)或通过扭矩传感器直接测量它。本文研究了用加速度计测量振动信号的替代方法和未发表的方法评估齿槽的可行性。为了测量齿槽对机床振动的影响,本文设计并制造了一台机床。测试的机器允许应用几个齿槽水平,振动和扭矩测量与机器运行在几个转速。特别是在较低的转速下,齿槽的影响在扭矩谱中清晰地观察到。然而,振动信号的频谱没有显示出齿槽扭矩的影响,因为在齿槽频率下,振幅与齿槽水平不对应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of vibration induced by cogging torque in permanent-magnet synchronous motors
Noise and vibration of electrical machines are a major concern for applications where comfort is a significant aspect. There are several faults that may arise in machines increasing noise and vibration. Cogging is one of the main faults in Permanent Magnet Synchronous Machines (PMSMs). Tools for the diagnosis of cogging are needed to detect the machines that do not fulfil the quality requirements. The usual methods found in bibliography to assess cogging are Motor Current Signature Analysis (MCSA) or directly measuring it by means of a torque sensor. This paper studies the feasibility of the alternative and unpublished method of vibration signals measured with accelerometers to evaluate cogging. In this paper a machine is designed and manufactured, in order to measure the effect of cogging in the vibration of the machine. The tested machine allows to apply several cogging levels, and the vibrations and the torque are measured with the machine running at several rotational speeds. Especially at lower rotational speeds, the effect of the cogging is clearly observed in the spectra of the torque. However, the spectra of the vibration signals do not show the effect of cogging torque, since at the cogging frequency the amplitudes do not correspond to the cogging levels.
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