伪非二进第二代小波紧框架机械故障诊断

Binqiang Chen, Zhousuo Zhang, Jie Zhang, Zhibo Yang, Zhengjia He
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引用次数: 2

摘要

研究了一种新的小波紧框架(WTF)构造策略,用于获得具有非二进时频划分网格的伪二代基。所提出的构造策略从已知的第二代小波基开始,并将其应用于未消差滤波器组。通过正反变换,将输入信号分解成一组二进小波包。通过引入一种系统的小波包重排序方法和集成小波生成方法,生成了另一组相应的非二进小波包。结果表明,所导出的伪非二进第二代小波包(PNSGW)与定义良好的带通滤波器相关联,具有良好的时频局域性和精确的位移不变性。将PNSGW策略与谱峰度相结合,用于机械系统的早期故障检测。处理结果表明,该方法可以很好地补充传统的二进小波变换,用于研究故障机械部件引起的瞬态脉冲响应。
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Pseudo non-dyadic second generation wavelet tight frame for machine fault diagnosis
This paper investigates a novel wavelet tight frame (WTF) constructing strategy for obtaining pseudo second generation bases with non-dyadic time-frequency partition grids. The proposed constructing strategy starts with a known second generation wavelet basis and applies it in an undecimated filterbank. Via forward and inverse transformation procedure, an input signal is decomposed into a set of dyadic wavelet packets. By introducing a systematic way of wavelet packet reordering and ensemble wavelet generating method, another corresponding set of non-dyadic wavelet packets are generated. It is demonstrated that the derived pseudo non-dyadic second generation wavelet packets (PNSGW) are associated with well-defined band-pass filters, which ensure good time-frequency localizability and exact shift-invariance. The PNSGW strategy is combined with spectral kurtosis to detect incipient faults in mechanical systems. The processing results show that the proposed technique is a well complement to conventional dyadic wavelet transform in investigating transient impulse responses caused by faulty mechanical components.
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