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Wavelet based demodulation of vibration signals generated by defects in rolling element bearings

机译:基于小波的滚动轴承轴承缺陷产生的振动信号解调

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Vibration signals resulting from roller bearing defects, present a rich content of physical information, the appropriate analysis of which can lead to the clear identification of the nature of the fault. The envelope detection or demodulation methods have been established as the dominant analysis methods for this purpose, since they can separate the useful part of the signal from its redundant contents. The paper proposes a new effective demodulation method, based on the wavelet transform. The method fully exploits the underlying physical concepts of the modulation mechanism, present in the vibration response of faulty bearings, using the excellent time-frequency localization properties of the wavelet analysis. The choice of the specific wavelet family is marginal to their overall effect, while the necessary number of wavelet levels is quite limited. Experimental results and industrial measurements for three different types of bearing faults confirm the validity of the overall approach.
机译:滚子轴承缺陷产生的振动信号呈现出丰富的物理信息,对其进行适当的分析可以清楚地识别故障的性质。为此,包络线检测或解调方法已被确立为主要的分析方法,因为它们可以将信号的有用部分与其冗余内容分开。提出了一种基于小波变换的新型有效解调方法。该方法利用小波分析的出色时频定位特性,充分利用了故障​​轴承振动响应中存在的调制机制的基本物理概念。特定小波家族的选择对于它们的总体效果而言是微不足道的,而小波水平的必要数量却非常有限。三种不同类型轴承故障的实验结果和工业测量结果证实了整体方法的有效性。

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