The phenomenon of Doppler shift in the acoustic signal acquired by a microphone amounted beside the railway leads to the difficulty for fault diagnosis of train bearings with a high moving speed. To enhance the condition monitoring performance of the bearings on a passing train using stationary microphones, the elimination of the Doppler shift should be implemented firstly to correct the severe frequency-domain distortion of the acoustic signal recorded in these conditions. In this paper, a Doppler shift removal method is proposed based on instantaneous frequency (IF) estimation (IFE) for analyzing acoustic signals from train bearings with a high speed. Specifically, the IFE based on short-time Fourier transform is firstly applied to attain the IF vector. According to the acoustic theory of Morse, the data fitting is then carried out to achieve the fitting IFs with which the resampling sequence can be established as the resampling vector in time domain. The resampled signal can be finally reconstructed to realize fault diagnosis of train bearings. To demonstrate the effectiveness of this method, two simulations and an experiment with practical acoustic signals of train bearings with a crack on the outer raceway and the inner raceway have been carried out, and the comparison results have been presented in this paper.
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April 2014
Research-Article
Doppler Shift Removal Based on Instantaneous Frequency Estimation for Wayside Fault Diagnosis of Train Bearings
Ao Zhang,
Ao Zhang
Department of Precision Machinery
and Precision Instrumentation,
and Precision Instrumentation,
University of Science and Technology of China
, Hefei, Anhui 230026
, China
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Fei Hu,
Fei Hu
Department of Precision Machinery
and Precision Instrumentation,
and Precision Instrumentation,
University of Science and Technology of China
, Hefei, Anhui 230026
, China
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Qingbo He,
Qingbo He
1
Department of Precision Machinery
and Precision Instrumentation,
e-mail: qbhe@ustc.edu.cn
and Precision Instrumentation,
University of Science and Technology of China
, Hefei, Anhui 230026
, China
e-mail: qbhe@ustc.edu.cn
1Corresponding author.
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Changqing Shen,
Changqing Shen
Department of Precision Machinery
and Precision Instrumentation,
and Precision Instrumentation,
University of Science and Technology of China
, Hefei, Anhui 230026
, China
Search for other works by this author on:
Fang Liu,
Fang Liu
Department of Precision Machinery
and Precision Instrumentation,
and Precision Instrumentation,
University of Science and Technology of China
, Hefei, Anhui 230026
, China
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Fanrang Kong
Fanrang Kong
Department of Precision Machinery
and Precision Instrumentation,
e-mail: kongfr@ustc.edu.cn
and Precision Instrumentation,
University of Science and Technology of China
, Hefei, Anhui 230026
, China
e-mail: kongfr@ustc.edu.cn
Search for other works by this author on:
Ao Zhang
Department of Precision Machinery
and Precision Instrumentation,
and Precision Instrumentation,
University of Science and Technology of China
, Hefei, Anhui 230026
, China
Fei Hu
Department of Precision Machinery
and Precision Instrumentation,
and Precision Instrumentation,
University of Science and Technology of China
, Hefei, Anhui 230026
, China
Qingbo He
Department of Precision Machinery
and Precision Instrumentation,
e-mail: qbhe@ustc.edu.cn
and Precision Instrumentation,
University of Science and Technology of China
, Hefei, Anhui 230026
, China
e-mail: qbhe@ustc.edu.cn
Changqing Shen
Department of Precision Machinery
and Precision Instrumentation,
and Precision Instrumentation,
University of Science and Technology of China
, Hefei, Anhui 230026
, China
Fang Liu
Department of Precision Machinery
and Precision Instrumentation,
and Precision Instrumentation,
University of Science and Technology of China
, Hefei, Anhui 230026
, China
Fanrang Kong
Department of Precision Machinery
and Precision Instrumentation,
e-mail: kongfr@ustc.edu.cn
and Precision Instrumentation,
University of Science and Technology of China
, Hefei, Anhui 230026
, China
e-mail: kongfr@ustc.edu.cn
1Corresponding author.
Contributed by the Design Engineering Division of ASME for publication in the JOURNAL OF VIBRATION AND ACOUSTICS. Manuscript received September 30, 2012; final manuscript received December 10, 2013; published online February 5, 2014. Assoc. Editor: Patrick S. Keogh.
J. Vib. Acoust. Apr 2014, 136(2): 021019 (10 pages)
Published Online: February 5, 2014
Article history
Received:
September 30, 2012
Revision Received:
December 10, 2013
Citation
Zhang, A., Hu, F., He, Q., Shen, C., Liu, F., and Kong, F. (February 5, 2014). "Doppler Shift Removal Based on Instantaneous Frequency Estimation for Wayside Fault Diagnosis of Train Bearings." ASME. J. Vib. Acoust. April 2014; 136(2): 021019. https://doi.org/10.1115/1.4026431
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