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A Gear Chain Fault Detection Method Using an Adaptive Interference Canceling

机译:一种使用自适应干扰取消的齿轮链故障检测方法

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A fault diagnosis method based on wavelet and adaptive interference canceling is presented for the identification of a damaged gear tooth. A damaged tooth of a certain gear chain generates impulsive signals that could be informative to fault detections. Many publications are available not only for the impulsive vibration signal analysis but the application of signal processing techniques to the impulsive signal detections. However, most of the studies about the gear fault detection using the impulsive vibration signals of a driving gear chain are limited to the verification of damage existence on a gear pair. Requirements for more advanced method locating damaged tooth in a driving gear chain should be a motivation of further studies. In this work an adaptive interference canceling combined with wavelet method is used for a successful identification of the damaged tooth location. An application of the wavelet technique provides a superior resolution for the damage detection to the traditional frequency spectrum based methods. An analysis and experiment with three pair gear chain show the feasibility of this study yielding a precise location of the damaged gear tooth.
机译:提出了一种基于小波和自适应干扰消除的故障诊断方法,用于识别损坏的齿轮齿。某种齿轮链的损坏齿产生冲动的信号,可能是对故障检测的信息。许多出版物不仅可以用于脉冲振动信号分析,而是可以应用信号处理技术在脉冲信号检测中的应用。然而,关于使用驱动齿轮链的脉冲振动信号的齿轮故障检测的大多数研究限于齿轮对造成损坏存在的验证。对驱动齿轮链中损坏齿的更高级方法的要求应该是进一步研究的动机。在这项工作中,与小波法组合的自适应干扰消除用于成功识别损坏的齿位置。小波技术的应用为传统频谱的方法提供了损坏检测的卓越分辨率。三对齿轮链的分析与实验表明了该研究的可行性,从而产生了损坏齿轮齿的精确位置。

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