Title :
Multibeam sonar calibration: target localization in azimuth
Author :
Chu, Dezhang ; Baldwin, Kenneth C. ; Foote, Kenneth G. ; Li, Yanchao ; Mayer, Larry A. ; Melvin, Gary D.
Author_Institution :
Woods Hole Oceanogr. Inst., MA, USA
Abstract :
Multibeam sonar requires calibration for use in absolute backscattering measurements of water-column targets. In an initial study, a least-squares method has been developed to locate a standard calibration target in the sonar transmit plane from the individual transducer element receive signals. By enabling the target position to be specified in azimuth, the overall transmit and receive sensitivity may be measured simultaneously for a number of beams, considerably rationalizing the amount of work required for calibration by standard target. The localization technique has been applied to data derived from test measurements with the Simrad SM2000 Multibeam Echo Sounder, operating at 200 kHz, with 128 receive beams of nominal beamwidth 1.5×20 deg. The approximate root-mean-square phase mismatch is about 0.1 rad, and the resultant error of the predicted azimuth angle is less than 0.1 deg
Keywords :
array signal processing; backscatter; calibration; direction-of-arrival estimation; sonar arrays; sonar signal processing; 200 kHz; DOA estimation; Simrad SN12000 Multibeam Echo Sounder; approximate root-mean-square phase mismatch; azimuth angle error; backscattering measurements; beamwidth; direction of arrival estimation; least-squares method; multibeam sonar calibration; receive beams; receive sensitivity; sonar transmit plane; standard calibration target; target localization; target position; test measurements; transducer element receive signals; transmit sensitivity; water-column targets; Acoustic beams; Aquaculture; Azimuth; Calibration; Laboratories; Marine animals; Oceans; Sea measurements; Sonar applications; Sonar measurements;
Conference_Titel :
OCEANS, 2001. MTS/IEEE Conference and Exhibition
Conference_Location :
Honolulu, HI
Print_ISBN :
0-933957-28-9
DOI :
10.1109/OCEANS.2001.968395