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Bearing Fault Diagnosis with Varying Speed Conditions Based on Multi-Resolution Singular Value Decomposition

机译:基于多分辨率奇异值分解的不同速度条件轴承故障诊断

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Fault diagnosis with varying speed conditions has become a topic of interest in the field of rotating machinery diagnosis. Computed order tracking (COT) can successfully remove the effect of varying speed, however it is hard to directly identify the fault characteristics. In this study, a fault diagnosis method with varying speed bearing on the basis of multi-resolution singular value decomposition (MRSVD) is presented. First, the optimal resonance frequency band of the original vibration signal is selected by Fast-Kurtogram. Then, MRSVD is performed on the filtered signal, and the total decomposition layers of MRSVD is related to the decomposition layer corresponding to the maximum mutual information (MI) of detail signal and filter signal. Taking the mean value of all MIs as the threshold, the detail signal, whose corresponding MI is larger than the threshold, is considered as a sensitive one. All the sensitive detail signals are combined into reconstructed signal for computed order tracking (COT) analysis. The advantages and effectiveness of the new method are verified with simulation and experimental signals under varying speed conditions.
机译:具有不同速度条件的故障诊断已成为旋转机械诊断领域的兴趣的主题。计算的订单跟踪(COT)可以成功消除不同速度的效果,但很难直接识别故障特性。在这项研究中,提出了基于多分辨率奇异值分解(MRSVD)的不同速度轴承的故障诊断方法。首先,通过快速kurtogram选择原始振动信号的最佳共振频带。然后,对滤波信号执行MRSVD,MRSVD的总分解层与对应于细节信号和滤波器信号的最大互信息(MI)对应的分解层有关。将所有MIS的平均值作为阈值,其相应MI大于阈值的细节信号被认为是敏感的。所有敏感的细节信号都组合成用于计算订单跟踪(COT)分析的重建信号。在不同速度条件下,通过模拟和实验信号验证了新方法的优点和有效性。

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