DocumentCode :
2120385
Title :
ERS-ENVISAT Permanent Scatterers
Author :
Perissin, Daniele ; Prati, Claudio ; Rocca, Fabio ; Ferretti, Alessandro
Author_Institution :
Dipt. di Elettronica e Informazione, Politecnico di Milano, Italy
Volume :
2
fYear :
2004
fDate :
20-24 Sept. 2004
Firstpage :
985
Abstract :
The phase time series of a perfect point-wise Permanent Scatterer (PS) would show a phase jump passing from ERS to ENVISAT SAR images. A PS analysis has been carried out on a dataset including both ERS and ENVISAT images. For each PS, elevation, LOS velocity and phase jump have been jointly estimated and removed, allowing the identification of the atmospheric phase screen. The PS population so found represents the intersection of ERS and ENVISAT PS populations. The probability of natural targets to behave as PS both in ERS and ENVISAT has been analyzed as a function of their Radar Cross-Section, acquisition geometry and amplitude. Distributed targets with a narrow backscattering lobe pointed towards the first sensor (ERS) are not coherently observed by the second one (ENVISAT), whereas point-wise targets (e.g. natural corner reflectors, dihedrals and small mirrors) will remain coherent in both cases. Experimental results have been carried out on a data set of 69 ERS images and 7 ENVISAT images (ERS-like mode) on Milano over a 20 km side area.
Keywords :
data acquisition; image registration; image sensors; interferometry; radar cross-sections; remote sensing by radar; synthetic aperture radar; target tracking; APS; Atmospheric Phase Screen identification; ENVISAT SAR image; ERS sensor; Environmental Satellite; European Remote Sensing Satellite; Italy; LOS velocity; Line Of Sight velocity; Milano; PS elevation; Radar Cross-Section; Synthetic Aperture radar; dihedral/mirror; distributed target backscattering lobe; natural corner reflectors; phase time series/jump; point-wise Permanent Scatterer; point-wise target; satellite acquisition geometry/amplitude; Backscatter; Frequency estimation; Image analysis; Information geometry; Interferometry; Light scattering; Mirrors; Phase estimation; Radar cross section; Radar scattering;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Geoscience and Remote Sensing Symposium, 2004. IGARSS '04. Proceedings. 2004 IEEE International
Print_ISBN :
0-7803-8742-2
Type :
conf
DOI :
10.1109/IGARSS.2004.1368574
Filename :
1368574
Link To Document :
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