Title :
PolInSAR analysis of X-band data over vegetated and urban areas
Author :
Garestier, Franck ; Dubois-Fernandez, Pascale ; Dupuis, Xavier ; Paillou, Philippe ; Hajnsek, Irena
Author_Institution :
Office Nat. d´´Etudes et de Recherches en Aerospatiale, Ecole de l´´Air, Salon De Provence, France
Abstract :
This paper investigates the polarimetric and polarimetric interferometric synthetic aperture radar (PolInSAR) information contained in the high-resolution X-band data acquired by the RAMSES airborne SAR system over an area around Avignon, France containing bare surfaces, vegetation, and urban areas. The interferometric coherences are computed over natural and urban areas for all possible baseline copolar polarizations. In the complex plane, the obtained regions of coherence corresponding to most vegetation areas display small angular extents, meaning that if penetration occurs in the foliage, it is shallower than the system height accuracy. To quantify the PolInSAR information, an analysis of the interferometric height accuracy is first performed, and the results are compared with those associated with a theoretical and an empirical model. Concerning vegetation, a 6-m height difference is measured between the different polarimetric phase centers over a sparse pine forest, probably due to the presence of holes in the canopy. Crop study reveals also that wheat-type fields present oriented media properties at X-band due to their vertical structure. Over urban areas, in most cases, building height can be accurately obtained by using Pauli polarimetric phase center information.
Keywords :
airborne radar; crops; data acquisition; forestry; radar polarimetry; radiowave interferometry; remote sensing by radar; synthetic aperture radar; terrain mapping; vegetation mapping; Avignon; France; Pauli polarimetric phase center information; PolInSAR analysis; RAMSES airborne SAR system; X-band data; canopy; copolar polarization; crops; data acquisition; interferometric coherence; pine forest; polarimetric interferometric synthetic aperture radar; urban areas; vegetation areas; wheat-type field; Data analysis; Displays; Information analysis; Performance analysis; Phase measurement; Polarization; Synthetic aperture radar; Synthetic aperture radar interferometry; Urban areas; Vegetation; Height; X-band; polarimetric interferometric synthetic aperture radar (PolInSAR); synthetic aperture radar (SAR); vegetation;
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
DOI :
10.1109/TGRS.2005.862525