DocumentCode
2533995
Title
Short time pulse Bistatic Forward Scattering Inverse Synthetic Aperture Radar imaging
Author
Lazarov, Andon ; Kabakchiev, Christo ; Kostadinov, Todor
Author_Institution
Dept. of Inf. & Tech. Sci., Bourgas Free Univ., Bourgas, Bulgaria
fYear
2012
fDate
23-25 May 2012
Firstpage
426
Lastpage
429
Abstract
In this work Bistatic Inverse Forward Scattering Inverse Synthetic Aperture Radar (BFISAR) concept is addressed. Geometric description of BFISAR topology with stationary transmitter and receiver, and moving target is given. Kinematic vector equations are derived. BFISAR signal mathematical model with short pulse modulation is described. It is proven that BFISAR signal formation and image reconstruction can be interpreted as direct and inverse projective operation respectively. Through Taylor expansion of the projective operator basic image reconstruction procedures, including phase correction, Fourier transform range compression and Fourier transform azimuth compression are defined. Numerical and natural experiments to verify mathematical models derived are carried out.
Keywords
Fourier transforms; image reconstruction; pulse modulation; radar imaging; radar receivers; radar transmitters; synthetic aperture radar; BFISAR concept; BFISAR signal formation; BFISAR signal mathematical model; BFISAR topology; Fourier transform azimuth compression; Fourier transform range compression; Taylor expansion; geometric description; inverse projective operation; kinematic vector equations; mathematical models; moving target; phase correction; projective operator basic image reconstruction procedures; short pulse modulation; short time pulse bistatic forward scattering inverse synthetic aperture radar imaging; stationary receiver; stationary transmitter; formatting; insert; style; styling;
fLanguage
English
Publisher
ieee
Conference_Titel
Radar Symposium (IRS), 2012 13th International
Conference_Location
Warsaw
ISSN
2155-5754
Print_ISBN
978-1-4577-1838-0
Type
conf
DOI
10.1109/IRS.2012.6233358
Filename
6233358
Link To Document