:Generalized Demodulation Transform for Bearing Fault Diagnosis Under Nonstationary Conditions and Gear Noise Interferences论文

:Generalized Demodulation Transform for Bearing Fault Diagnosis Under Nonstationary Conditions and Gear Noise Interferences论文

本文主要研究内容

作者(2019)在《Generalized Demodulation Transform for Bearing Fault Diagnosis Under Nonstationary Conditions and Gear Noise Interferences》一文中研究指出:It is a challenging issue to detect bearing fault under nonstationary conditions and gear noise interferences. Meanwhile, the application of the traditional methods is limited by their deficiencies in the aspect of computational accuracy and e ciency, or dependence on the tachometer. Hence, a new fault diagnosis strategy is proposed to remove gear interferences and spectrum smearing phenomenon without the tachometer and angular resampling technique. In this method, the instantaneous dominant meshing multiple(IDMM) is firstly extracted from the time-frequency representation(TFR) of the raw signal, which can be used to calculate the phase functions(PF) and the frequency points(FP). Next, the resonance frequency band excited by the faulty bearing is obtained by the band-pass filter. Furthermore, based on the PFs, the generalized demodulation transform(GDT) is applied to the envelope of the filtered signal. Finally, the target bearing is diagnosed by matching the peaks in the spectra of demodulated signals with the theoretical FPs. The analysis results of simulated and experimental signal demonstrate that the proposed method is an e ective and reliable tool for bearing fault diagnosis without the tachometer and the angular resampling.

Abstract

It is a challenging issue to detect bearing fault under nonstationary conditions and gear noise interferences. Meanwhile, the application of the traditional methods is limited by their deficiencies in the aspect of computational accuracy and e ciency, or dependence on the tachometer. Hence, a new fault diagnosis strategy is proposed to remove gear interferences and spectrum smearing phenomenon without the tachometer and angular resampling technique. In this method, the instantaneous dominant meshing multiple(IDMM) is firstly extracted from the time-frequency representation(TFR) of the raw signal, which can be used to calculate the phase functions(PF) and the frequency points(FP). Next, the resonance frequency band excited by the faulty bearing is obtained by the band-pass filter. Furthermore, based on the PFs, the generalized demodulation transform(GDT) is applied to the envelope of the filtered signal. Finally, the target bearing is diagnosed by matching the peaks in the spectra of demodulated signals with the theoretical FPs. The analysis results of simulated and experimental signal demonstrate that the proposed method is an e ective and reliable tool for bearing fault diagnosis without the tachometer and the angular resampling.

论文参考文献

  • [1].Error matching detection and robust estimation adjustment approach for map conflation[J]. TONG XiaoHua & DENG SuSu Department of Surveying and Geo-informatics,Tongji University,Shanghai 200092,China.  Science in China(Series E:Technological Sciences).2008(S1)
  • [2].从天然气到核能:主动磁悬浮轴承系统的多种应用(英文)[J]. Richard Jayawant.  风机技术.2018(04)
  • [3].The Manufacturing Equipment Support Model Based on the Manufacturing Equipment Role[J]. LIU Jiu-yi,LI Bo,WANG Ke-qin.  International Journal of Plant Engineering and Management.2013(01)
  • [4].Direct Digital Manufacturing Industry Ascendant[J]. XIA Bo-xiong,DU Jun,JIAO Hong-wei.  International Journal of Plant Engineering and Management.2013(03)
  • [5].Unsteady Study on the Effects of Matching Characteristic of Tandem Cascade on the Performance and Flow at Large Angle of Attack[J]. LIU Hanru,YUE Shaoyuan,WANG Yangang,ZHANG Jun.  Journal of Thermal Science.2018(06)
  • [6].IMPROVEMENT OF FLUID PIPE LUMPED PARAMETER MODEL[J]. Kong XiaowuWei JianhuaQiu MinxiuWu GenmaoState Key Laboratory of Fluid PowerTransmission and Control,Zhejiang University,Hangzhou 310027, China.  Chinese Journal of Mechanical Engineering.2004(01)
  • [7].Path integral solution of vibratory energy harvesting systems[J]. Wenan JIANG,Peng SUN,Gangling ZHAO,Liqun CHEN.  Applied Mathematics and Mechanics(English Edition).2019(04)
  • 论文详细介绍

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