DocumentCode
2266587
Title
Range-Doppler algorithm for processing bistatic SAR data based on the LBF in the constant-offset constellation
Author
Zare, Ali ; Masnadi-Shirazi, Mohammad Ali ; Samadi, Sadegh
Author_Institution
Sch. of Electr. & Comput. Eng., Shiraz Univ., Shiraz, Iran
fYear
2012
fDate
7-11 May 2012
Abstract
This paper focuses on processing bistatic synthetic aperture radar data in the constant-offset configuration using the range-Doppler algorithm. The analytical two-dimensional signal spectrum introduced by Loffeld (Loffeld´s Bistatic Formula: LBF) is used as the bistatic point-target reference spectrum. This spectrum consists of two key phase terms: a quasi-monostatic (QM) term similar to the monostatic phase of a point target, and a bistatic deformation (BD) term which is an intrinsic feature of the bistatic geometry and is due to the separation between the transmitter and receiver platforms. In this paper, both phase terms are combined into a single phase so that by directly using a Taylor series expansion, we may derive the key components of the signal including the azimuth modulation, range cell migration (RCM), and range-azimuth coupling. These terms can then be dealt with using the conventional processing techniques. In this paper, the range-Doppler algorithm is used which utilizes interpolation to remove the RCM, as in the monostatic case. Finally, simulation results are provided to verify the formulations.
Keywords
Doppler radar; interpolation; radar receivers; radar signal processing; radar transmitters; synthetic aperture radar; LBF; Loffeld bistatic formula:; RCM; Taylor series expansion; azimuth modulation; bistatic SAR data; bistatic deformation; bistatic geometry; bistatic point-target reference spectrum; constant-offset configuration; constant-offset constellation; monostatic phase; quasimonostatic term; range cell migration; range-Doppler algorithm; range-azimuth coupling; receiver platform; synthetic aperture radar; transmitter platform; two-dimensional signal spectrum; Azimuth; Chirp; Couplings; Receivers; Synthetic aperture radar; Taylor series; Transmitters;
fLanguage
English
Publisher
ieee
Conference_Titel
Radar Conference (RADAR), 2012 IEEE
Conference_Location
Atlanta, GA
ISSN
1097-5659
Print_ISBN
978-1-4673-0656-0
Type
conf
DOI
10.1109/RADAR.2012.6212104
Filename
6212104
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