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Planetary gearbox fault diagnosis via rotary encoder signal analysis

机译:通过旋转编码器信号分析的行星齿轮箱故障诊断

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摘要

Planetary gearbox fault diagnosis via vibration signal analysis is highly challenging, because of vibration spectral complexity due to gear fault modulation and especially time-varying transmission path effects. Rotary encoder signals contain gear fault signature, and are free of extra amplitude modulation caused by time-varying transmission path effects. Hence, encoder signal analysis provides a potentially effective approach to overcome difficulties in planetary gearbox fault diagnosis. Gear faults induce jitters in instantaneous angular speed, thus leading to changes in pulse interval of encoder signals. We proposed to analyze the order spectrum of repetitive temporal interval reciprocal between adjacent encoder pulses in the angle domain. Our proposed method is free from the algorithmic complexity of instantaneous angular speed or acceleration estimation, and more importantly addresses the difficult issue of planetary gearbox fault diagnosis under time-varying speeds. It is validated through lab experiments of a planetary gearbox under both constant and time-varying speed conditions. Localized faults on the sun, planet and ring gears are all successfully diagnosed.
机译:通过振动信号分析的行星齿轮箱故障诊断具有高度挑战,因为由于齿轮故障调制而振动谱复杂度,尤其是时变传输路径效应。旋转编码器信号包含齿轮故障签名,并且由于时变传输路径效应而不是额外的振幅调制。因此,编码器信号分析提供了一种潜在有效的方法来克服行星齿轮箱故障诊断的困难。齿轮故障以瞬时角度速度诱导抖动,从而导致编码器信号的脉冲间隔的变化。我们建议分析角域中相邻编码器脉冲之间的重复时间间隔倒数的顺序谱。我们所提出的方法没有瞬时角速度或加速估计的算法复杂性,更重要的是解决了在时变速度下行星齿轮箱故障诊断的困难问题。通过在恒定和时变速度条件下通过行星齿轮箱的实验室实验验证。 Sun,行星和戒指齿轮上的局部故障都成功诊断出来。

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