DocumentCode
1421263
Title
Fast Fourier Methods for Synthetic Aperture Radar Imaging
Author
Andersson, Fredrik ; Moses, Randolph ; Natterer, Frank
Author_Institution
Lund Univ., Lund, Sweden
Volume
48
Issue
1
fYear
2012
Firstpage
215
Lastpage
229
Abstract
In synthetic aperture radar (SAR) one wishes to reconstruct the reflectivity function of a region on the ground from a set of radar measurements taken at several angles. The ground reflectivity is found by interpolating measured samples, which typically lie on a polar grid in frequency space, to an equally spaced rectangular grid in frequency space, then computing an inverse Fourier transform. The classical polar format algorithm (PFA) is often used to perform this interpolation. We describe two other methods for performing the interpolation and imaging efficiently and accurately. The first is the gridding method, which is widely used in the medical imaging community. The second method uses unequally- spaced fast Fourier transforms (USFFTs), a generic tool for arbitrary sampling geometries. We present numerical and computational comparisons of these three methods using both point scattering data and synthetic X-band radar reflectivity predictions of a construction backhoe.
Keywords
fast Fourier transforms; interpolation; radar imaging; synthetic aperture radar; classical polar format algorithm; equally spaced rectangular grid; fast Fourier method; frequency space; ground reflectivity; interpolation; inverse Fourier transform; medical imaging; polar grid; reflectivity function; synthetic aperture radar imaging; unequally-spaced fast Fourier transforms; Fourier transforms; Frequency measurement; Image reconstruction; Interpolation; Radar imaging; Reflectivity; Three dimensional displays;
fLanguage
English
Journal_Title
Aerospace and Electronic Systems, IEEE Transactions on
Publisher
ieee
ISSN
0018-9251
Type
jour
DOI
10.1109/TAES.2012.6129631
Filename
6129631
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