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首页> 外文期刊>Advances in Mechanical Engineering >A new fault feature for rolling bearing fault diagnosis under varying speed conditions:
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A new fault feature for rolling bearing fault diagnosis under varying speed conditions:

机译:变速条件下滚动轴承故障诊断的新故障功能:

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Most fault detection methods based on the assumption of working in stationary or approximate stationary conditions are limited under varying operation conditions, for that the frequency aliasing phenomenon is inevitable in the spectrum. Therefore, in order to handle the problem of fault diagnosis under non-stationary conditions, researchers have proposed numerous methods and some achievements have been obtained. In this article, a new feature extraction method is proposed for fault diagnosis of rolling bearings under varying speed conditions. Based on the assumption that the energy will increase when balls cross over fault position, frequency values are divided by instantaneous speed and arranged in the descending order of corresponding amplitude to form a new fault feature array, that is, the ratio of frequency to instantaneous speed reconfiguration arrays. Thereafter, the Euclidean distance classifier is utilized for recognition. The efficacy of the proposed method is demonstrated by simulated and exper...
机译:大多数基于在固定或近似固定条件下工作的假设的故障检测方法在变化的操作条件下受到限制,因为频谱中不可避免会出现频率混叠现象。因此,为了解决非平稳条件下的故障诊断问题,研究人员提出了许多方法,并取得了一些成果。本文提出了一种新的特征提取方法,用于变速条件下滚动轴承的故障诊断。基于这样的假设,即当球越过故障位置时能量会增加,频率值除以瞬时速度,并以相应振幅的降序排列,以形成新的故障特征数组,即频率与瞬时速度之比重新配置数组。此后,欧几里得距离分类器被用于识别。仿真和实验证明了该方法的有效性。

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