DocumentCode :
987837
Title :
Higher Order Statistics and Independent Component Analysis for Spectral Characterization of Acoustic Emission Signals in Steel Pipes
Author :
De la Rosa, Juan José González ; Piotrkowski, Rosa ; Ruzzante, José Evaristo
Author_Institution :
Cadiz Univ., Algeciras
Volume :
56
Issue :
6
fYear :
2007
Firstpage :
2312
Lastpage :
2321
Abstract :
Higher order statistics (HOS) are used to characterize acoustic emission events in ring-type samples from steel pipes for the oil industry. Cumulants are used twofold. First, diagonal bispectrum allows the separation of the primary (original) deformation from the reflections produced mainly in the suppressed chord. These longitudinal reflections can hardly be extracted via second-order methods, e.g., wavelet packets and power spectra, because they are partially masked by both Gaussian and non-Gaussian noise. Second, a cumulant-based independent component analysis may be used before the bispectrum, as a preprocessing complement, in the case of multiple-source and multiple-channel recordings. This algorithm suppresses the mutual influence of the sources and sensors. Sample registers were acquired by wide-frequency-range transducers (100-800 kHz) and digitalized by a 2.5-MHz, 12-bit analog-to-digital converter.
Keywords :
acoustic emission testing; acoustic signal processing; higher order statistics; independent component analysis; nondestructive testing; petroleum industry; pipes; acoustic emission signals; cumulants; frequency 100 kHz to 800 kHz; higher order statistics; independent component analysis; longitudinal reflections; multiple-channel recordings; oil industry; spectral characterization; steel pipes; wide-frequency-range transducers; word length 12 bit; Acoustic emission; Acoustic reflection; Analog-digital conversion; Gaussian noise; Higher order statistics; Independent component analysis; Petroleum industry; Steel; Transducers; Wavelet packets; Acoustic emission (AE); acoustic signal processing; frequency measurement; frequency-domain analysis; higher order statistics (HOS); nonlinearities; time–frequency analysis;
fLanguage :
English
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9456
Type :
jour
DOI :
10.1109/TIM.2007.907945
Filename :
4389102
Link To Document :
بازگشت