DocumentCode :
1528139
Title :
Detection of environmental mismatch in a shallow water waveguide
Author :
Tabrikian, Joseph ; Fostick, Gidon S. ; Messer, Hagit
Volume :
47
Issue :
8
fYear :
1999
fDate :
8/1/1999 12:00:00 AM
Firstpage :
2181
Lastpage :
2190
Abstract :
Performance of source localization, particularly using matched-field processing techniques, is very sensitive to modeling mismatch. This paper presents a novel test for detecting modeling mismatch in a bounded propagation medium, such as shallow water. The test is based on the fact that when there are no model uncertainties, the modal spectrum of the received signal is strictly limited to an a priori known set of modes. Mismatch in the modal eigenfunction of the assumed model causes the modal spectrum out of this band to be nonzero. The proposed test requires no prior knowledge about the radiating sources. The performance of the proposed test is evaluated via computer simulations of a benchmark shallow water channel. It is shown that the test is sensitive to mismatch in the channel depth and in bottom sound speeds. The ability of the test to identify array tilt mismatch is also presented. An application of the test for validation of maximum-likelihood localization results is also discussed
Keywords :
acoustic arrays; acoustic signal processing; acoustic waveguides; array signal processing; eigenvalues and eigenfunctions; maximum likelihood detection; spectral analysis; underwater acoustic propagation; array tilt mismatch; benchmark shallow water channel; bottom sound speeds; bounded propagation medium; channel depth; computer simulations; environmental mismatch detection; matched-field processing techniques; maximum-likelihood localization results; modal eigenfunction; modal spectrum; modeling mismatch detection; performance; received signal; shallow water waveguide; source localization; Degradation; Light rail systems; Maximum likelihood estimation; Multidimensional systems; Position measurement; Robustness; Signal processing algorithms; Testing; Water resources; Waveguide components;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/78.774761
Filename :
774761
Link To Document :
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