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Induction Motor Stator Current AM-FM Model and Demodulation Analysis for Planetary Gearbox Fault Diagnosis

机译:行星齿轮箱故障诊断的感应电机定子电流AM-FM模型和解调分析

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Induction motor-planetary gearbox drivetrains are widely used for industrial productions, including machine tools in manufacturing systems. For fault diagnosis of planetary gearboxes in such electromechanical systems, motor current signal analysis provides an effective alternative approach, because motor current signals have easier accessibility and are free from time-varying transfer path effects. Planetary gearbox faults generate load torque oscillations, leading to both amplitude modulation and frequency modulation (AM-FM) effects on induction motor current signals. To thoroughly understand gear fault features in current signals, an AM-FM current signal model is derived through mechanical-magnetic-electric interaction analysis, explicit equation of Fourier spectrum is derived, and sidebands characteristics are summarized. To avoid an intricate sideband analysis, amplitude and frequency demodulation analyses are proposed, explicit equations of corresponding demodulated spectra are derived, and gear fault features are summarized. The theoretical derivations are validated through lab experiments. Localized fault on the sun, planet, and ring gears are all successfully diagnosed using the proposed method.
机译:感应电动行星齿轮箱驱动器广泛用于工业生产,包括制造系统中的机床。对于这种机电系统中行星齿轮箱的故障诊断,电机电流信号分析提供了有效的替代方法,因为电机电流信号具有更容易的可访问性,并且没有时变路径效应。行星齿轮箱故障产生负载扭矩振荡,导致对感应电动机电流信号的幅度调制和频率调制(AM-FM)效应。为了彻底了解电流信号中的齿轮故障特征,通过机械磁电相互作用分析来导出AM-FM电流信号模型,导出傅立叶频谱的显式方程,并且概括了边带特性。为避免复杂的边带分析,提出了幅度和频率解调分析,导出了相应解调光谱的显式方程,总结了齿轮故障特征。理论衍生通过实验室实验验证。局部故障在太阳,行星和戒指齿轮上都是通过所提出的方法成功诊断的。

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