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Fault feature extraction and enhancement of rolling element bearing in varying speed condition

机译:变速条件下滚动轴承的故障特征提取与增强

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摘要

In engineering applications, the variability of load usually varies the shaft speed, which further degrades the efficacy of the diagnostic method based on the hypothesis of constant speed analysis. Therefore, the investigation of the diagnostic method suitable for the varying speed condition is significant for the bearing fault diagnosis. In this instance, a novel fault feature extraction and enhancement procedure was proposed by the combination of the iterative envelope analysis and a low pass filtering operation in this paper. At first, based on the analytical model of the collected vibration signal, the envelope signal was theoretically calculated and the iterative envelope analysis was improved for the varying speed condition. Then, a feature enhancement procedure was performed by applying a low pass filter on the temporal envelope obtained by the iterative envelope analysis. Finally, the temporal envelope signal was transformed to the angular domain by the computed order tracking and the fault feature was extracted on the squared envelope spectrum. Simulations and experiments were used to validate the efficacy of the theoretical analysis and proposed procedure. It is shown that the computed order tracking method is recommended to be applied on the envelope of the signal in order to avoid the energy spreading and amplitude distortion. Compared with the feature enhancement method performed by the fast kurtogram and corresponding optimal band pass filtering, the proposed method can efficiently extract the fault character in the varying speed condition with less amplitude attenuation. Furthermore, do not involve the center frequency estimation, the proposed method is more concise for engineering applications.
机译:在工程应用中,负载的可变性通常会改变轴的速度,这进一步降低了基于恒速分析假设的诊断方法的有效性。因此,研究适用于变速条件的诊断方法对于轴承故障诊断具有重要意义。在这种情况下,本文结合迭代包络分析和低通滤波操作,提出了一种新的故障特征提取和增强方法。首先,基于收集到的振动信号的解析模型,理论上计算出包络信号,并针对变速条件改进了迭代包络分析。然后,通过对通过迭代包络分析获得的时间包络应用低通滤波器来执行特征增强过程。最后,通过计算的阶次跟踪将时间包络信号变换到角域,并在平方包络谱上提取故障特征。仿真和实验被用来验证理论分析和提出的程序的有效性。结果表明,建议将计算阶次跟踪方法应用于信号的包络,以避免能量扩散和幅度失真。与快速峰图和相应的最佳带通滤波所执行的特征增强方法相比,该方法可以在变速条件下以较小的幅度衰减有效地提取故障特征。此外,由于不涉及中心频率估计,因此该方法对于工程应用更为简洁。

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