DocumentCode
811733
Title
A methodology for detection and classification of some underwater acoustic signals using time-frequency analysis techniques
Author
Boashash, Boualem ; O´Shea, Peter
Author_Institution
CRISSP, Queensland Univ., Brisbane, Qld., Australia
Volume
38
Issue
11
fYear
1990
fDate
11/1/1990 12:00:00 AM
Firstpage
1829
Lastpage
1841
Abstract
Signal detection techniques based on time-frequency signal analysis with the Wigner-Ville distribution (WVD) and the cross Wigner-Ville distribution (XWVD) are presented. These techniques are shown to provide high-resolution signal characterization in a time-frequency space, and good noise rejection performance. This type of detection is applied to the signaturing, detection, and classification of specific machine sounds: the individual cylinder firings of a marine engine. For this task, a four-step procedure has been devised. The autocorrelation function (ACF) is first used to ascertain the number of engine cylinders and the firing rate of the engine. Further correlation techniques are then used to detect the time at which individual cylinder firing events occur. WVD- and XWVD-based analyses follow to procedure high-resolution time-frequency signatures. Finally, two-dimensional correlations are used for the classification of the individual cylinders. The proposed methodology is tested on real data. XWVD-based detection is also applied to detection of a transient with unknown waveshape (using real data)
Keywords
acoustic signal processing; correlation methods; signal detection; spectral analysis; underwater sound; Wigner-Ville distribution; autocorrelation function; cross Wigner-Ville distribution; engine cylinders; engine firing rate; signal classification; signal detection; signal signaturing; time-frequency signal analysis; two-dimensional correlations; underwater acoustic signals; Acoustic noise; Acoustic signal detection; Australia; Detectors; Engine cylinders; Radar detection; Signal analysis; Time frequency analysis; Underwater acoustics; Underwater tracking;
fLanguage
English
Journal_Title
Acoustics, Speech and Signal Processing, IEEE Transactions on
Publisher
ieee
ISSN
0096-3518
Type
jour
DOI
10.1109/29.103085
Filename
103085
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