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Underwater source localization using cylindrical hydrophone array and Riemannian Matched Field Processing

Tran Cao, Quyen (2022) Underwater source localization using cylindrical hydrophone array and Riemannian Matched Field Processing. AKUSTIKA, 42 . pp. 7-13. ISSN 25708775 (In Press)

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Abstract

The Matched Field Processing (MFP) is for defining the range and the depth of an underwater source effectively. However the algorithm is seldom used for finding the azimuthal direction of the source and is still not considered for multiple field replicas due to the variation of sound velocity. If using cylindrical hydrophone array (CHA) with 32x10 elements (ten ring with each ring of 32 elements) the rough azimuthal angle resolution, theta=9 degree , is obtained. Then using TDOA (Time difference of arrival) of the two selected consecutive beams of CHA the system could provide the bearing accuracy up to theta opt=theta/80=0.1 degree . Then, the range and the depth of the source are the solution of the proposed Riemannian MFP with the assumption of cylindrical spreading. The proposed RMFP is on the basis of Riemannian distance which is calculated directly by solving the geodesic equation on cylinder surface. The simulations show that only with the data from selected vertical hydrophone array of CHA (there are 32 vertical arrays on cylindrical array) is enough to locate the range and the depth of underwater source precisely.

Item Type: Article
Subjects: Electronics and Communications > Communications
Scopus-indexed journals
Divisions: Faculty of Electronics and Telecommunications (FET)
Depositing User: Trần Cao Quy�n
Date Deposited: 21 Mar 2022 00:39
Last Modified: 21 Mar 2022 00:39
URI: http://eprints.uet.vnu.edu.vn/eprints/id/eprint/4718

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