DocumentCode
1251542
Title
Spotlight mode SAR stereo technique for height computation
Author
Desai, Mita D.
Author_Institution
Div. of Eng., Texas Univ., San Antonio, TX, USA
Volume
6
Issue
10
fYear
1997
fDate
10/1/1997 12:00:00 AM
Firstpage
1400
Lastpage
1411
Abstract
This paper examines the feasibility of extracting three-dimensional (3-D) or topographic information in spotlight mode stereo synthetic aperture radar (SAR). A display of a SAR (intensity) image has two axes: range and cross-range. Elevated scatterers appear closer in range; this phenomenon is called radar image layover. How the height of each scatterer can be computed from the difference in its layover between two images is investigated. This is analogous to computing height from disparity distance (triangulation) in optical stereo. The same procedure can be applied on pixel by pixel basis for terrain elevation mapping. A general expression is derived for the accuracy of the height estimate as a function of the range resolution and the angular difference between the image planes. Accuracy increases as the angle between the image planes increases, but the bright scatterers in one image tend to fade in the other image. This limited angular persistence of radar scatterers is also discussed. Trajectories for data collection are examined that provide near-optimal height estimates while eliminating the scatterer persistency problem
Keywords
feature extraction; image resolution; parameter estimation; radar cross-sections; radar imaging; stereo image processing; synthetic aperture radar; 3D information extraction; SAR image; angular difference; angular persistence; cross range; data collection trajectories; disparity distance; elevated scatterers; height computation; height estimate accuracy; image planes; intensity image; pixel; radar image layover; radar scatterers; range; range resolution; spotlight mode SAR stereo technique; synthetic aperture radar; terrain elevation mapping; topographic information extraction; triangulation; Adaptive optics; Data mining; Displays; Genetic expression; Optical computing; Optical scattering; Radar imaging; Radar scattering; Synthetic aperture radar; Terrain mapping;
fLanguage
English
Journal_Title
Image Processing, IEEE Transactions on
Publisher
ieee
ISSN
1057-7149
Type
jour
DOI
10.1109/83.624959
Filename
624959
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