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Optimal sinusoidal modelling of gear mesh vibration signals for gear diagnosis and prognosis

机译:齿轮啮合振动信号的最佳正弦建模,用于齿轮的诊断和预测

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摘要

In this paper, the synchronous signal average of gear mesh vibration signals is modelled with the multiple modulated sinusoidal representations. The signal model parameters are optimised against the measured signal averages by using the batch learning of the least squares technique. With the optimal signal model, all components of a gear mesh vibration signal, including the amplitude modulations, the phase modulations and the impulse vibration component induced by gear tooth cracking, are identified and analysed with insight of the gear tooth crack development and propagation. In particular, the energy distribution of the impulse vibration signal, extracted from the optimal signal model, provides sufficient information for monitoring and diagnosing the evolution of the tooth cracking process, leading to the prognosis of gear tooth cracking. The new methodologies for gear mesh signal modelling and the diagnosis of the gear tooth fault development and propagation are validated with a set of rig test data, which has shown excellent performance.
机译:在本文中,齿轮啮合振动信号的平均同步信号采用多重调制正弦表示法建模。通过使用最小二乘技术的批量学习,针对测得的信号平均值优化信号模型参数。利用最佳信号模型,可以识别并分析齿轮啮合振动信号的所有分量,包括振幅调制,相位调制和由齿轮裂纹产生的脉冲振动分量,从而洞悉齿轮裂纹的发展和传播。特别地,从最佳信号模型提取的脉冲振动信号的能量分布为监视和诊断齿裂过程的发展提供了足够的信息,从而导致了齿轮齿裂的预后。通过一组钻机测试数据验证了用于齿轮啮合信号建模以及齿轮齿故障发展和传播的诊断的新方法,这些方法已显示出出色的性能。

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