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Article Dans Une Revue EURASIP Journal on Advances in Signal Processing Année : 2010

Underwater Broadband Source Localization Based on Modal Filtering and Features Extraction

Grégoire Le Touzé
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Barbara Nicolas
Jerome I. Mars
Dominique Fattaccioli
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Résumé

Passive source localization is a crucial issue in underwater acoustics. In this paper, we focus on shallow water environment (0 to400 m) and broadband Ultra-Low Frequency acoustic sources (1 to 100 Hz). In this configuration and at a long range, the acousticpropagation can be described by normal mode theory. The propagating signal breaks up into a series of depth-dependent modes.These modes carry information about the source position. Mode excitation factors and mode phases analysis allow, respectively,localization in depth and distance. We propose two different approaches to achieve the localization: multidimensional approach(using a horizontal array of hydrophones) based on frequency-wavenumber transform (F-Kmethod) and monodimensionalapproach (using a single hydrophone) based on adapted spectral representation (FTamethod). For both approaches, we proposefirst complete tools for modal filtering, and then depth and distance estimators. We show that adding mode sign and sourcespectrum informations improves considerably the localization performance in depth. The reference acoustic field needed for depthlocalization is simulated with the new realistic propagation modelMoctesuma. The feasibility of both approaches,F-KandFTa,arevalidated on data simulated in shallow water for different configurations. The performance of localization, in depth and distance,is very satisfactory.

Dates et versions

hal-00557090 , version 1 (18-01-2011)

Identifiants

Citer

Maciej Lopatka, Grégoire Le Touzé, Barbara Nicolas, Xavier Cristol, Jerome I. Mars, et al.. Underwater Broadband Source Localization Based on Modal Filtering and Features Extraction. EURASIP Journal on Advances in Signal Processing, 2010, 2010, pp.article ID 304103. ⟨10.1155/2010/304103⟩. ⟨hal-00557090⟩
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