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非平稳工况下基于振动传感器的滚动轴承瞬时缺陷频率估计新方法

Novel Method for Vibration Sensor-Based Instantaneous Defect Frequency Estimation for Rolling Bearings Under Non-Stationary Conditions.

作者信息

Zhao Dezun, Gelman Len, Chu Fulei, Ball Andrew

机构信息

Centre for Efficiency and Performance Engineering (CEPE), School of Computing and Engineering, University of Huddersfield, Huddersfield HD1 3DH, UK.

Department of Mechanical Engineering, Tsinghua University, Beijing 100084, China.

出版信息

Sensors (Basel). 2020 Sep 11;20(18):5201. doi: 10.3390/s20185201.

Abstract

It is proposed a novel instantaneous frequency estimation technology, multi-generalized demodulation transform, for non-stationary signals, whose true time variations of instantaneous frequencies are unknown and difficult to extract from the time-frequency representation due to essentially noisy environment. Theoretical bases of the novel instantaneous frequency estimation technology are created. The main innovations are summarized as: (a) novel instantaneous frequency estimation technology, multi-generalized demodulation transform, is proposed, (b) novel instantaneous frequency estimation results, obtained by simulation, for four types of amplitude and frequency modulated non-stationary single and multicomponent signals under strong background noise (signal to noise ratio is -5 dB), and (c) novel experimental instantaneous frequency estimation results for defect frequency of rolling bearings for multiple defect frequency harmonics, using the proposed technology in non-stationary conditions and in conditions of different levels of noise interference, including a strong noise interference. Quantitative instantaneous frequency estimation errors are employed to evaluate performance of the proposed IF estimation technology. Simulation and experimental estimation results show high effectiveness of the proposed estimation technology.

摘要

针对非平稳信号,提出了一种新型瞬时频率估计技术——多广义解调变换。在实际噪声环境中,非平稳信号瞬时频率的真实时变情况未知且难以从时频表示中提取。建立了这种新型瞬时频率估计技术的理论基础。主要创新点总结如下:(a)提出了新型瞬时频率估计技术——多广义解调变换;(b)通过仿真获得了在强背景噪声(信噪比为 -5 dB)下四类调幅调频非平稳单分量和多分量信号的新型瞬时频率估计结果;(c)利用所提出的技术,在非平稳条件以及不同噪声干扰水平(包括强噪声干扰)下,获得了滚动轴承缺陷频率的多缺陷频率谐波的新型实验瞬时频率估计结果。采用定量瞬时频率估计误差来评估所提出的瞬时频率估计技术的性能。仿真和实验估计结果表明了所提出估计技术的高效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd4c/7570996/08ea38c2036b/sensors-20-05201-g001.jpg

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