DocumentCode :
720016
Title :
De-noising of rail crack AE signal based on wavelet modulus maxima
Author :
Qiushi Hao ; Yi Shen ; Yan Wang ; Xin Zhang
Author_Institution :
Dept. of Control Sci. & Eng., Harbin Inst. of Technol., Harbin, China
fYear :
2015
fDate :
11-14 May 2015
Firstpage :
675
Lastpage :
680
Abstract :
On the basis of wavelet modulus maxima characterization of local regularity theory and the advantages of wavelet transform, an optimized wavelet modulus maxima de-noising method applied on rail crack AE signal is presented in this paper. In the background of the new real-time rail crack detection method by AE, wavelet modulus maxima de-noising is proved to be an effective way to extract the crack signal. Different parameters choosing principles in different noise conditions are discussed, in order to get the best de-noise effectiveness at different speed. The Segmented multi-frequency damping oscillation model is proposed, and the relation between the simulate signal and the real ones are found. Through the experiments of simulate signals, the principles of selecting proper parameters and the de-noising abilities at different speed are demonstrated, which give a strong evidence of the effectiveness of this method.
Keywords :
acoustic signal processing; crack detection; mechanical engineering computing; rails; signal denoising; wavelet transforms; acoustic emission; crack signal extraction; local regularity theory; noise conditions; optimized wavelet modulus maxima denoising method; rail crack AE signal denoising; real-time rail crack detection method; segmented multifrequency damping oscillation model; wavelet modulus maxima characterization; wavelet transform; Damping; Noise reduction; Rails; Signal to noise ratio; Wavelet transforms; acoustic emission; rail detection; wavelet modulus maxima de-noising; wavelet transform;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Instrumentation and Measurement Technology Conference (I2MTC), 2015 IEEE International
Conference_Location :
Pisa
Type :
conf
DOI :
10.1109/I2MTC.2015.7151349
Filename :
7151349
Link To Document :
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