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首页> 外文期刊>Mechanical systems and signal processing >Amplitude and phase interaction in Hilbert demodulation of vibration signals: Natural gear wear modeling and time tracking for condition monitoring
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Amplitude and phase interaction in Hilbert demodulation of vibration signals: Natural gear wear modeling and time tracking for condition monitoring

机译:振动信号的Hilbert解调中的幅度和相互作用:天然齿轮磨损建模和时间跟踪条件监控

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摘要

In the context of automatic and preventive condition monitoring of rotating machines, this paper revisits the demodulation process essential for detecting and localizing cracks in gears and bearings. The objective of the paper is to evaluate the performance of the well-known Hilbert demodulation by providing a quantified assessment in terms of signal processing. For this purpose, vibration test signals are simulated guided by the analysis of real-world measurements. The database comes from a natural wear experimentation on a test bench at an industrial scale and without any fault initiation. In the proposed simulated model, the amplitude modulation is designed in a physical approach in order to be able to set up the number of faulty teeth and their location. The impact of a limited spectral bandwidth filtering is quantified not only for the amplitude but also for the phase modulation estimations. The interactions between the amplitude and phase estimations are discussed. A focus is made on the analytic signal ambiguity due to the non-uniqueness of the amplitude estimation. This property induces an original investigation when demodulating the residual generated after a time synchronous averaging. Finally, as the objective is a continuous surveillance of a machine, results are given for a sequence of real-world measurements in order to visualize the fault evolution through the demodulation process.
机译:在自动和预防性调节旋转机器的监测的背景下,本文重新定义了对齿轮和轴承中的裂缝检测和定位裂缝必需的解调过程。本文的目的是通过在信号处理方面提供定量评估来评估众所周知的Hilbert解调的性能。为此目的,通过对现实世界测量的分析来模拟振动测试信号。该数据库来自工业规模的测试台上的自然磨损实验,没有任何故障启动。在所提出的模拟模型中,幅度调制以物理方法设计,以便能够建立故障齿数及其位置。限量频谱带宽滤波的影响不仅用于幅度,而且对于相位调制估计量而定量。讨论了幅度和相位估计之间的相互作用。由于幅度估计的非唯一性,对分析信号模糊的焦点进行了焦点。当在时间同步平均后解调残差时,此属性会引起原始调查。最后,由于目标是一种机器的连续监测,因此提供了一系列现实世界测量的结果,以便通过解调过程可视化故障演化。

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