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Permanent magnet synchronous generator stator current AM-FM model and joint signature analysis for planetary gearbox fault diagnosis

机译:永磁同步发电机定子电流AM-FM模型和行星齿轮箱故障诊断的关节签名分析

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Wind energy is renewable and wind power generation facilities have been growing rapidly around the world. Permanent magnet synchronous generators (PMSGs) and planetary gearboxes are commonly used in wind turbines (WTs). For planetary gearbox fault diagnosis, PMSG stator current signal analysis provides a potential alternative approach because stator current signals contain fault signatures with easier accessibility comparing to conventional vibration signals. Planetary gearbox faults result in PMSG input torque oscillations, leading to both amplitude modulation and frequency modulation (AM-FM) effects on stator current signals. To better reveal gear fault features in PMSG stator current signals, this paper proposes to diagnose planetary gearbox faults from three complementary analysis results of the PMSG stator current, i.e., Fourier spectrum, amplitude demodulated spectrum and frequency demodulated spectrum. For this purpose, an AM-FM current signal mode! is derived through mechanical-magnetic-electric interaction analysis. Explicit equation of Fourier spectrum is derived with its sideband characteristics investigated. Both amplitude and frequency demodulation analyses are proposed to compensate for or mitigate the difficulty in the intricate sideband analysis of Fourier spectrum. Due to its capability in signal mono-component decomposition for accurate estimation of instantaneous frequency, adaptive local iterative filtering is utilized in frequency demodulation analysis. Explicit equations of corresponding demodulated spectra are derived, and gear fault signatures in PMSG stator current signals are revealed. The theoretical derivations and proposed methods are validated through lab experiments by diagnosing localized faults on the sun, planet and ring gears.
机译:风能是可再生的,风力发电设施在世界各地迅速增长。永磁同步发电机(PMSG)和行星齿轮箱通常用于风力涡轮机(WTS)。对于行星齿轮箱故障诊断,PMSG定子电流信号分析提供了潜在的替代方法,因为定子电流信号包含与传统振动信号相比更容易可访问的故障签名。行星齿轮箱故障导致PMSG输入扭矩振荡,导致幅度调制和频率调制(AM-FM)对定子电流信号的影响。为了更好地显示PMSG定子电流信号中的齿轮故障特征,本文提出了从PMSG定子电流的三个互补分析结果诊断行星齿轮箱故障,即傅里叶频谱,幅度解调频谱和频率解调频谱。为此目的,AM-FM电流信号模式!通过机械磁性相互作用分析来源。傅立叶频谱的显式方程具有调查的边带特性。提出了幅度和频率解调分析来补偿傅里叶谱的复杂边带分析的难度。由于其在信号单组分分解中的能力,用于精确估计瞬时频率,适应性局部迭代滤波在频率解调分析中使用。导出相应解调光谱的显式方程,并揭示了PMSG定子电流信号中的齿轮故障签名。通过诊断太阳,行星和戒指齿轮上的局部故障,通过实验室实验验证理论衍生和所提出的方法。

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