DocumentCode :
1104758
Title :
Parametric modeling and estimation of acoustic sediment properties using a system identification approach
Author :
Cisneros, Zobeida ; Peirlinckx, Luc ; Van Biesen, Leo Piesre
Author_Institution :
Dept. of Fundamental Electr. & Instrum., Vrije Univ., Brussels, Belgium
Volume :
42
Issue :
6
fYear :
1995
Firstpage :
1002
Lastpage :
1008
Abstract :
The acoustic properties of marine sediments are measured to obtain an acoustic signature of their mechanical characteristics. The proposed 1-D wave propagation model accounts for absorption and dispersion. Use is made of an inverse procedure based on a maximum likelihood estimator for obtaining a parametric identification of the sediments. Measurements are performed in the laboratory, in reflection and transmission modes, on prepared samples of natural sediments, at normal incidence, and using a controlled measurement environment in the frequency range of 300 to 700 kHz. The model validation is performed for a water layer, an ideal medium with little absorption and dispersion, and for a silty-clay layer. A comparison between the estimated and measured amplitude and phase characteristics for these two media indicates that the parametric identification of the silty-clay is successful. For both media, comparable differences, of 0.3 dB maximum for the amplitude and three degrees for the phase, are observed.
Keywords :
maximum likelihood estimation; seafloor phenomena; sediments; ultrasonic propagation; 1-D wave propagation model; 300 to 700 kHz; absorption; acoustic properties; dispersion; inverse method; marine sediment; maximum likelihood estimation; mechanical characteristics; parametric modeling; reflection; silty-clay layer; system identification; transmission; water layer; Absorption; Acoustic measurements; Acoustic propagation; Frequency measurement; Maximum likelihood estimation; Mechanical factors; Mechanical variables measurement; Parametric statistics; Performance evaluation; Sediments;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/58.476543
Filename :
476543
Link To Document :
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