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Cyclostationary Analysis for Gearbox and Bearing Fault Diagnosis

机译:齿轮箱的循环平稳分析及轴承故障诊断

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Gearbox and rolling element bearing vibration signals feature modulation, thus being cyclostationary. Therefore, the cyclic correlation and cyclic spectrum are suited to analyze their modulation characteristics and thereby extract gearbox and bearing fault symptoms. In order to thoroughly understand the cyclostationarity of gearbox and bearing vibrations, the explicit expressions of cyclic correlation and cyclic spectrum for amplitude modulation and frequency modulation (AM-FM) signals are derived, and their properties are summarized. The theoretical derivations are illustrated and validated by gearbox and bearing experimental signal analyses. The modulation characteristics caused by gearbox and bearing faults are extracted. In faulty gearbox and bearing cases, more peaks appear in cyclic correlation slice of 0 lag and cyclic spectrum, than in healthy cases. The gear and bearing faults are detected by checking the presence or monitoring the magnitude change of peaks in cyclic correlation and cyclic spectrum and are located according to the peak cyclic frequency locations or sideband frequency spacing.
机译:齿轮箱和滚动元件的轴承振动信号具有调制特性,因此是平稳的。因此,循环相关性和循环频谱适合分析其调制特性,从而提取齿轮箱和轴承故障症状。为了透彻了解齿轮箱和轴承振动的循环平稳性,推导了调幅和调频(AM-FM)信号的循环相关性和循环频谱的明确表达式,并总结了它们的特性。通过齿轮箱和轴承实验信号分析说明并验证了理论推导。提取了由变速箱和轴承故障引起的调制特性。在齿轮箱和轴承故障的情况下,与正常情况相比,在具有零滞后和循环频谱的循环相关切片中出现更多的峰值。齿轮和轴承故障是通过检查循环相关性和循环频谱中峰值的存在或监视其大小变化来检测的,并根据峰值循环频率位置或边带频率间隔进行定位。

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