DocumentCode :
1359090
Title :
A Measurement Quality Factor for Swath Bathymetry Sounders
Author :
Lurton, Xavier ; Augustin, Jean-Marie
Author_Institution :
NSE/AS, Inst. Francais de Rech. pour l´´Exploitation de la Mer (IFREMER), Plouzane, France
Volume :
35
Issue :
4
fYear :
2010
Firstpage :
852
Lastpage :
862
Abstract :
The quality estimation associated with individual soundings measured and computed by swath bathymetry sonars is a paramount issue which is most often imperfectly addressed today by sonar manufacturers. In this paper, a unified definition is proposed for a quality factor usable for all swath bathymetry sonars; the depth-relative error is directly estimated from the signal characteristics used in the sounding computation. The basic algorithms are presented for both phase-difference (oblique incidence) and amplitude (normal incidence) detection, and can be readily implemented in any swath bathymetry system using these detection principles. This approach gives a direct access to the objective bathymetric performance of individual soundings, and hence avoids the explicit estimation of intermediate quantities such as the signal-to-noise ratio (SNR). It makes possible intercomparisons between different systems (multibeam sounders versus interferometric sonars) and processing principles (phase difference versus amplitude); it is expected to provide a useful input to bathymetry postprocessing software using quality estimation of individual soundings.
Keywords :
acoustic signal detection; bathymetry; sonar; amplitude detection; interferometric sonar; measurement quality factor; multibeam sounder; phase difference; processing principle; swath bathymetry sonar; swath bathymetry sounders; Estimation; Interferometry; Q factor; Sea measurements; Signal to noise ratio; Sonar measurements; Bathymetry; interferometry; multibeam echosounder (MBES); sonar;
fLanguage :
English
Journal_Title :
Oceanic Engineering, IEEE Journal of
Publisher :
ieee
ISSN :
0364-9059
Type :
jour
DOI :
10.1109/JOE.2010.2064391
Filename :
5607320
Link To Document :
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