2003Unpublished venueRequires access

Signal sonar processing

G. Bienvenu

Open publisher page 3 citations

Abstract

This paper describes the major trends in sonar signal processing and gives some example of advanced algorithms to illustrate the need in computation power: adaptive beamforming for passive sonars, wideband Doppler code for active sonar in coastal/shallow water environment (reverberation limiting conditions) and synthetic aperture processing for minehunting sonars. The performances of these algorithms compared to conventional ones are shown on real data obtained at sea.

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What this paper is about

This paper describes the major trends in sonar signal processing and gives some example of advanced algorithms to illustrate the need in computation power: adaptive beamforming for passive sonars, wideband Doppler code for active sonar in coastal/shallow water environment (reverberation limiting conditions) and synthetic aperture processing for minehunting sonars. The performances of these algorithms compared to conventional ones are shown on real data obtained at sea.

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OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper describes the major trends in sonar signal processing and gives some example of advanced algorithms to illustrate the need in computation power: adaptive beamforming for passive sonars, wideband Doppler code for active sonar in coastal/shallow water environment (reverberation limiting conditions) and synthetic aperture processing for minehunting sonars. The performances of these algorithms compared to conventional ones are shown on real data obtained at sea.

Key concepts: Sonar, Synthetic aperture sonar, Beamforming, Sonar signal processing, Marine mammals and sonar, Reverberation, Computer science, Signal processing

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