DocumentCode
87602
Title
Multireceiver Correction for the Chirp Scaling Algorithm in Synthetic Aperture Sonar
Author
Xuebo Zhang ; Jinsong Tang ; Heping Zhong
Author_Institution
Electron. Coll. of Eng., Naval Univ. of Eng., Wuhan, China
Volume
39
Issue
3
fYear
2014
fDate
Jul-14
Firstpage
472
Lastpage
481
Abstract
The phase center approximation (PCA) and the motion of the receiver array during reception are two main conditions that must be solved to use fast-Fourier-based imaging techniques in multireceiver synthetic aperture sonar (SAS). The former issue affects focusing results at close range while the latter one influences imaging performances in far distance. The processing result is that the uncompensated phase errors, introduced by those two issues, would degrade SAS imaging quality seriously. Through the analysis of outgoing and incoming acoustic paths, this paper derives an improved PCA method, considering the influence under those two approximations, describes the residual effects of narrow-beam approximations for PCA and “stop-and-hop”(S&H) errors in 2-D space domain, and presents imagery processed with chirp scaling (CS) algorithm. Based on the simulation and lake-trial results, the new processing method provides image quality better than conventional algorithms.
Keywords
fast Fourier transforms; sonar imaging; synthetic aperture sonar; 2D space domain; CS algorithm; S&H errors; SAS imaging quality; chirp scaling algorithm; fast-Fourier-based imaging technique; imaging performance; improved PCA method; incoming acoustic path; multireceiver SAS; multireceiver correction; multireceiver synthetic aperture sonar; narrow-beam approximation; outgoing acoustic path; phase center approximation; receiver array motion; stop-and-hop errors; uncompensated phase errors; Chirp scaling (CS) algorithm; error; multi receiver; phase center approximation (PCA); stop-and-hop (S&H); synthetic aperture sonar (SAS);
fLanguage
English
Journal_Title
Oceanic Engineering, IEEE Journal of
Publisher
ieee
ISSN
0364-9059
Type
jour
DOI
10.1109/JOE.2013.2251809
Filename
6523115
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