Refined matching linear chirplet transform for exhibiting time-frequency features of nonstationary vibration and acoustic signals
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Subject
Applied Mathematics,Electrical and Electronic Engineering,Condensed Matter Physics,Instrumentation
Reference31 articles.
1. Feature trend extraction and adaptive density peaks search for intelligent fault diagnosis of machines;Wang;IEEE Trans. Ind. Inf.,2019
2. A time-frequency analysis algorithm for ultrasonic waves generating from a debonding defect by using empirical wavelet transform;Liu;Appl. Acoust.,2018
3. Adaptive parameterless empirical wavelet transform based time-frequency analysis method and its application to rotor rubbing fault diagnosis;Zheng;Signal Process.,2017
4. Synchrosqueezed wavelet transforms: An empirical mode decomposition-like tool;Daubechies;Appl. Comput. Harmon. Anal.,2011
5. Matching demodulation transform and synchrosqueezing in time-frequency analysis;Wang;IEEE Trans. Signal Process.,2014
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