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Fault Diagnosis of Planetary Gearbox Based on Complementary Ensemble Empirical Mode Decomposition and Teager Energy Operator

机译:基于互补集合经验模态分解和Teager能量算子的行星齿轮箱故障诊断

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Planetary gearboxes are widely used in the modern mechanical transmission equipment. The fault diagnosis of the planetary gearboxes is an important work. When the planetary gearbox fault occurs, its vibration signal has the characteristics of complex frequency components and amplitude modulation-frequency modulation. In view of these problems, a signal demodulation analysis method based on complementary ensemble empirical mode decomposition (CEEMD) and Teager energy operator is proposed to extract instantaneous amplitude and instantaneous frequency information of the fault signals. First, the CEEMD method is used to decompose the vibration signals of the complex multi component planetary gearbox into a series of single component intrinsic mode functions (IMFs). Then, the Teager energy operator is used to estimate the amplitude envelope and the instantaneous frequency of each single component signal. The intrinsic mode function is selected as the sensitive component according to the fluctuation characteristic of the instantaneous frequency. Finally, the Fourier transformation is applied in the obtained amplitude envelope and instantaneous frequency of the sensitive component to identify the gear fault characteristic frequencies, and achieve the accurate diagnosis of the planetary gearbox fault. The effectiveness and superiority of the method is verified through the analysis of the fault simulation experiment data of the planetary gearbox.
机译:行星齿轮箱广泛用于现代机械传动设备中。行星齿轮箱的故障诊断是一项重要的工作。当行星齿轮箱发生故障时,其振动信号具有复数频率分量和调幅-调频的特性。针对这些问题,提出了一种基于互补集成经验模态分解(CEEMD)和Teager能量算子的信号解调分析方法,以提取故障信号的瞬时幅度和瞬时频率信息。首先,使用CEEMD方法将复杂的多组件行星齿轮箱的振动信号分解为一系列单组件固有模式函数(IMF)。然后,使用Teager能量算子来估计每个单个分量信号的幅度包络和瞬时频率。根据瞬时频率的波动特性,选择本征模式函数作为敏感分量。最后,对所获得的敏感分量的振幅包络和瞬时频率进行傅立叶变换,以识别齿轮故障特征频率,从而实现对行星齿轮箱故障的准确诊断。通过对行星齿轮箱故障仿真实验数据的分析,验证了该方法的有效性和优越性。

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