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Dconformer: A denoising convolutional transformer with joint learning strategy for intelligent diagnosis of bearing faults

  • Sheng Li
  • , J. C. Ji
  • , Yadong Xu
  • , Ke Feng
  • , Ke Zhang
  • , Jingchun Feng
  • , Michael Beer
  • , Qing Ni
  • , Yuling Wang
  • Hohai University
  • University of Technology Sydney
  • Nanjing University of Science and Technology
  • Leibniz University Hannover
  • University of Liverpool
  • Tongji University

Research output: Contribution to journalArticlepeer-review

120 Scopus citations

Abstract

Rolling bearings are the core components of rotating machinery, and their normal operation is crucial to entire industrial applications. Most existing condition monitoring methods have been devoted to extracting discriminative features from vibration signals that reflect bearing health status. However, the complex working conditions of rolling bearings often make the fault-related information easily buried in noise and other interference. Therefore, it is challenging for existing approaches to extract sufficient critical features in these scenarios. To address this issue, this paper proposes a novel CNN-Transformer network, referred to as Dconformer, capable of extracting both local and global discriminative features from noisy vibration signals. The main contributions of this research include: (1) Developing a novel joint-learning strategy that simultaneously enhances the performance of signal denoising and fault diagnosis, leading to robust and accurate diagnostic results; (2) Constructing a novel CNN-transformer network with a multi-branch cross-cascaded architecture, which inherits the strengths of CNNs and transformers and demonstrates superior anti-interference capability. Extensive experimental results reveal that the proposed Dconformer outperforms five state-of-the-art approaches, particularly in strong noisy scenarios.

Original languageEnglish
Article number111142
JournalMechanical Systems and Signal Processing
Volume210
DOIs
StatePublished - 15 Mar 2024

Keywords

  • Complex working conditions
  • Dconformer
  • Fault diagnosis
  • Noisy scenarios
  • Rolling bearing
  • Vibration signal

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