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Vibration diagnostic method based on improved intrinsic time-scale decomposition and energy operator demodulation for fault diagnosis of helicopter planetary gearboxes

机译:基于改进的内在时标分解和能量算子解调的振动诊断方法对直升机行星齿轮箱的故障诊断

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摘要

Planetary gearboxes play a significant role in helicopter transmission system. Fault diagnosis of planetary gearboxes is a key topic for health monitoring and maintenance of helicopter. The vibration signals of faulty planetary gearboxes have complicated spectral structures due to its distinctive and complex structure and time-variant running operation condition, leading to the difficulty in fault diagnosis of planetary gearboxes. Considering that both the amplitude envelope and the instantaneous frequency of vibration signals are associated with the characteristic frequency of the faulty gear, we propose a vibration diagnostic method using the amplitude and frequency demodulation analysis. First, the vibration signal was decomposed into several proper rotation components (PRs) and a trend component by the improved intrinsic time-scale decomposition (IITD) method. Then the energy operator method was exploited to estimate the amplitude envelope and instantaneous frequency of the PR which contained obvious impacts. Finally, by analyzing the dominant peaks in the Fourier spectra of the demodulated amplitude envelope and instantaneous frequency with the theoretical characteristic frequency of each gear, we can diagnose planetary gearbox faults. The effectiveness of the proposed method is demonstrated by simulated signal analysis, and is validated by experimental signal analysis of a lab planetary gearbox with sun gear faults including a chipped tooth and a missing tooth.
机译:行星齿轮箱在直升机传动系统中起着重要作用。行星齿轮箱的故障诊断是直升机健康监测和维护的关键主题。有故障的行星齿轮箱的振动信号由于其独特而复杂的结构以及时变的运行工况而具有复杂的频谱结构,从而导致行星齿轮箱故障诊断的困难。考虑到振动信号的振幅包络和瞬时频率均与故障齿轮的特征频率相关,我们提出一种利用振幅和频率解调分析的振动诊断方法。首先,通过改进的固有时间尺度分解(IITD)方法将振动信号分解为几个适当的旋转分量(PRs)和趋势分量。然后,利用能量算子方法估计了包含明显影响的PR的幅度包络和瞬时频率。最后,通过用每个齿轮的理论特征频率分析解调后的振幅包络和瞬时频率的傅立叶频谱中的主峰,可以诊断出行星齿轮箱故障。通过模拟信号分析证明了该方法的有效性,并通过实验室行星齿轮箱的太阳齿轮故障(包括缺齿和缺齿)的实验信号分析验证了该方法的有效性。

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