DocumentCode
1402048
Title
Geoacoustic Inversions of Horizontal and Vertical Line Array Acoustic Data From a Surface Ship Source of Opportunity
Author
Stotts, Steven A. ; Koch, Robert A. ; Joshi, Sumedh M. ; Nguyen, Vian T. ; Ferreri, Vincent W. ; Knobles, David P.
Author_Institution
Appl. Res. Labs., Univ. of Texas at Austin (ARLUT), Austin, TX, USA
Volume
35
Issue
1
fYear
2010
Firstpage
79
Lastpage
102
Abstract
The application of an inversion methodology produces the first demonstration of a simultaneous solution for geoacoustic and source track parameters from acoustic data collected in a shallow-water, sandy sediment environment. Inversion solutions from data collected in the 2006 Shallow Water Experiment (SW06) are extracted from noise measurements of a surface ship source on an L-array. The methodology includes a screening algorithm to determine a set of frequencies for the inversion data. In addition, the methodology assesses the accuracy of the inversion solution and incorporates an estimation of parameter value uncertainties. The solution from the inversion of the horizontal component of the L-array data from the surface ship source before its closest point of approach (CPA) is used to construct modeled propagation loss for comparison with observed received level (RL) structure as the source departs from CPA. Inversion of the data from a single element in the vertical component of the L-array produces a solution that agrees with the solution obtained from the inversion of horizontal subaperture data. Also, modeled transmission loss (TL) structure obtained from the single-element inversion solution reproduces the depth dependence of the RL structure observed at other elements of the vertical component of the L-array.
Keywords
inverse problems; oceanographic techniques; oceanography; sediments; underwater acoustic propagation; 2006 Shallow Water Experiment; AD 2006; L-array data; SW06; geoacoustic inversions; horizontal line array acoustic data; horizontal subaperture data; inversion solutions; sandy sediment; screening algorithm; shallow-water acoustic data; source track parameters; surface ship source; vertical line array acoustic data; Geoacoustic inversion; horizontal line array; localization; trackbeam data; vertical line array;
fLanguage
English
Journal_Title
Oceanic Engineering, IEEE Journal of
Publisher
ieee
ISSN
0364-9059
Type
jour
DOI
10.1109/JOE.2009.2032256
Filename
5405008
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