DocumentCode :
1765370
Title :
Using DInSAR to Separate Surface and Subsurface Features
Author :
Morrison, Kyle ; Bennett, Janine C. ; Nolan, Mark
Author_Institution :
Dept. of Inf. & Syst. Eng., Cranfield Univ., Shrivenham, UK
Volume :
51
Issue :
6
fYear :
2013
fDate :
41426
Firstpage :
3424
Lastpage :
3430
Abstract :
We report on an investigation into the use of differential interferometric synthetic aperture radar (SAR) (DInSAR) for the discrimination between surface and subsurface features in a soil, undertaken at the Ground-Based SAR Microwave Measurement Facility. A temporal sequence of C-band VV SAR images of a drying soil containing a buried target was collected. While the phase record of the signal identified with the soil return showed almost no variation, in stark contrast, the phase from the buried target showed a strongly linear change with time. A model is presented, which describes the observed phase changes in terms of retardation of the signal by the soil dielectric properties, which are dependent upon the moisture content. The model confirms a strongly linear relationship between phase and volumetric soil moisture. The linearity promises to greatly simplify any exploitation scheme, and such a DInSAR scheme would be applicable at large standoff distances from airborne and spaceborne platforms, in contrast to current subsurface techniques which rely on close-in measurement to spatially isolate returns vertically in backscatter.
Keywords :
radar imaging; radar interferometry; soil; synthetic aperture radar; C-band VV SAR images; DInSAR scheme; Ground-Based SAR Microwave Measurement Facility; SAR DInSAR; airborne platform; differential interferometric synthetic aperture radar; drying soil; moisture content; phase soil moisture; signal phase record; soil dielectric properties; spaceborne platform; volumetric soil moisture; Radar imaging; Soil measurements; Soil moisture; Spaceborne radar; Synthetic aperture radar; Dielectric materials; ground-penetrating radar; moisture measurement; permittivity measurement; radar imaging; radar signal analysis; radar signature; soil measurements; synthetic aperture imaging; synthetic aperture radar (SAR);
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
Publisher :
ieee
ISSN :
0196-2892
Type :
jour
DOI :
10.1109/TGRS.2012.2226183
Filename :
6392259
Link To Document :
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