DocumentCode :
770985
Title :
Focusing of General Bistatic SAR Configuration Data With 2-D Inverse Scaled FFT
Author :
Natroshvili, Koba ; Loffeld, Otmar ; Nies, Holger ; Ortiz, Amaya Medrano ; Knedlik, Stefan
Author_Institution :
Center for Sensorsyst., Siegen Univ.
Volume :
44
Issue :
10
fYear :
2006
Firstpage :
2718
Lastpage :
2727
Abstract :
This paper presents a bistatic focusing solution for the general case, when transmitter and receiver trajectories move along nonparallel trajectories with different velocities. The approach in this paper is based on the point target reference spectrum for an arbitrary bistatic configuration, derived from our previous publications. Based on various simulations, the validity of the formula for both airborne and spaceborne configurations is demonstrated. Focusing for special bistatic azimuth time-invariant configurations, "tandem" and "translationally invariant" constellations are accomplished. All focusing algorithms have been developed in an interactive data language and verified with adequate simulation results. The bistatic algorithm was further successfully applied to real bistatic data acquired by the German Research Establishment for Applied Natural Sciences\´ PAMIR and AER-II synthetic aperture radar systems. Processing in the general case turns out to be additionally truly azimuth time variant. It is solved by implementing a novel two-dimensional inverse-scaled fast Fourier transform algorithm
Keywords :
fast Fourier transforms; focusing; radar receivers; radar transmitters; remote sensing by radar; synthetic aperture radar; 2D inverse scaled FFT; AER-II SAR; Loffeld´s bistatic formula; PAMIR SAR; bistatic SAR configuration; bistatic focusing; fast Fourier transform; receiver trajectory; synthetic aperture radar; target-point reference spectrum; transmitter trajectory; Azimuth; Convolution; Fast Fourier transforms; Geometry; Natural languages; Principal component analysis; Solid modeling; Spaceborne radar; Synthetic aperture radar; Transmitters; Bistatic synthetic aperture radar; Loffeld´s bistatic formula (LBF); Rocca´s smile; focusing; method of stationary phase; synthetic aperture radar (SAR); target-point (TP) reference spectrum; two-dimensional (2-D) inverse-scaled fast Fourier transform (ISFFT);
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
Publisher :
ieee
ISSN :
0196-2892
Type :
jour
DOI :
10.1109/TGRS.2006.872725
Filename :
1704959
Link To Document :
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