DocumentCode
812860
Title
Time-domain geoacoustic inversion of high-frequency chirp signal from a simple towed system
Author
Park, Cheolsoo ; Seong, Woojae ; Gerstoft, Peter ; Siderius, Martin
Author_Institution
Scripps Inst. of Oceanogr., California Univ., San Diego, La Jolla, CA, USA
Volume
28
Issue
3
fYear
2003
fDate
7/1/2003 12:00:00 AM
Firstpage
468
Lastpage
478
Abstract
An inversion method using a towed system consisting of a source and two receivers is presented. High-frequency chirp signals that have been emitted from the source are received after multiple penetrations and reflections from the shallow water sub-bottom structure and are processed for geoacoustical parameter estimation. The data are processed such that a good resolution and robustness is achieved via matched filtering, which requires information about the source signal. The inversion is formulated as an optimization problem, which maximizes the cost function defined as a normalized correlation between the measured and modeled signals directly in the time domain. The very fast simulated reannealing optimization method is applied to the global search problem. The modeled time signal is obtained using a ray approach. An experiment was carried out in the Mediterranean Sea using a towed source and receiver system. The inversion method is applied to the experimental data and results are found to be consistent with previous frequency-domain analyses using measurements from a towed horizontal array of receivers and measurements on a vertical array.
Keywords
chirp modulation; geophysical signal processing; inverse problems; matched filters; oceanographic techniques; parameter estimation; simulated annealing; time-domain analysis; underwater sound; Mediterranean Sea; cost function; data processing; high-frequency chirp signal; horizontal array; matched filtering; ocean acoustics; optimization; parameter estimation; ray theory; shallow water sub-bottom structure; simple towed system; time-domain geoacoustic inversion; very fast simulated reannealing; Chirp; Frequency measurement; Geoacoustic inversion; Parameter estimation; Reflection; Sea measurements; Signal processing; Signal resolution; Time domain analysis; Water resources;
fLanguage
English
Journal_Title
Oceanic Engineering, IEEE Journal of
Publisher
ieee
ISSN
0364-9059
Type
jour
DOI
10.1109/JOE.2003.816684
Filename
1240009
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