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Fault diagnosis of demountable disk-drum aero-engine rotor using customized multiwavelet method

  • Xi'an Jiaotong University
  • China National Petroleum Corporation

Research output: Contribution to journalArticlepeer-review

10 Scopus citations

Abstract

The demountable disk-drum aero-engine rotor is an important piece of equipment that greatly impacts the safe operation of aircraft. However, assembly looseness or crack fault has led to several unscheduled breakdowns and serious accidents. Thus, condition monitoring and fault diagnosis technique are required for identifying abnormal conditions. Customized ensemble multiwavelet method for aero-engine rotor condition identification, using measured vibration data, is developed in this paper. First, customized multiwavelet basis function with strong adaptivity is constructed via symmetric multiwavelet lifting scheme. Then vibration signal is processed by customized ensemble multiwavelet transform. Next, normalized information entropy of multiwavelet decomposition coefficients is computed to directly reflect and evaluate the condition. The proposed approach is first applied to fault detection of an experimental aero-engine rotor. Finally, the proposed approach is used in an engineering application, where it successfully identified the crack fault of a demountable disk-drum aero-engine rotor. The results show that the proposed method possesses excellent performance in fault detection of aero-engine rotor. Moreover, the robustness of the multiwavelet method against noise is also tested and verified by simulation and field experiments.

Original languageEnglish
Article number119
Pages (from-to)26997-27020
Number of pages24
JournalSensors (Switzerland)
Volume15
Issue number10
DOIs
StatePublished - 23 Oct 2015

Keywords

  • Aero-engine rotor
  • Customized ensemble multiwavelet
  • Fault diagnosis
  • Vibration signal analysis

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