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Subband averaging kurtogram with dual-tree complex wavelet packet transform for rotating machinery fault diagnosis

机译:子带均平均Kurtogram与双树复杂小波包变换,用于旋转机械故障诊断

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This paper presents a method called subband averaging kurtogram (SAK), incorporating with dual-tree complex wavelet packet transform (DTCWPT), to improve performance of the fast kurtogram (FK) for rotating machinery fault diagnosis. The proposed method first segments a signal into M sub-signals by a sliding window, then computes the kurtosis of subbands obtained by DTCWPT of each sub-signal. Finally, average kurtosis of corresponding subbands are calculated to obtain the SAK, which indicates the optimal frequency band for the envelope analysis. The FK is easily misled by non-Gaussian noise (e.g., sporadic impulse interferences) whereas the SAK can overcome this problem. Moreover, the DTCWPT simultaneously subdivides bands at high and low frequencies, offers the desirable property of approximate shift-invariance and meanwhile remains less computationally expensive. When the original DTCWPT iterates filter banks on the high-pass channel, the obtained subbands of a signal are not arranged in monotone order of the center frequency. This problem can be resolved by exchanging the inverted filter banks based on their bandpass properties. The proposed method provides improved performance compared to FK, in particular, for extracting periodic transients from noisy signals containing a variety of interferences. A simulation case and two applications to fault diagnosis of a planetary gearbox and a rolling bearing validate the effectiveness and improvements of the proposed method.
机译:本文介绍了一种名为SubBand平均KurtoGram(SAK)的方法,与双树复合小波分组变换(DTCWPT)合并,以提高快速KurtoGram(FK)的性能,用于旋转机械故障诊断。所提出的方法首先通过滑动窗口将信号分成M子信号,然后计算通过每个子信号的DTCWPT获得的子带的峰值。最后,计算相应子带的平均峰度以获得SAK,其表示信封分析的最佳频带。 FK容易被非高斯噪声误导(例如,零星的脉冲干扰),而SAK可以克服这个问题。此外,DTCWPT同时在高频和低频下细分频带,提供近似移位不变性的理想特性,并且同时仍然较少计算地昂贵。当原始DTCWPT在高通信道上迭代过滤器体时,所获得的信号的子带不是以中心频率的单调顺序排列。可以通过基于其乐队通路属性交换反转过滤器存储体来解析此问题。该方法与FK相比提供了改进的性能,特别是用于从包含各种干扰的嘈杂信号中提取周期性瞬态。模拟案例和两种应用于行星齿轮箱的故障诊断和滚动轴承验证了所提出的方法的有效性和改进。

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