DocumentCode
3689898
Title
Cosmo-skymed very short repeat-pass SAR interferometry over rural areas: The VAL D´agri and potenza test cases in Basilicata, Italy
Author
Pietro Milillo;Daniele Perissin;Paul Lundgren;Carmine Serio
Author_Institution
School of Engineering, University of Basilicata, Potenza, Italy
fYear
2015
fDate
7/1/2015 12:00:00 AM
Firstpage
98
Lastpage
101
Abstract
Over the last three decades interferometric synthetic aperture radar (InSAR) techniques have attained a fundamental role in surface deformation monitoring. The main importance is given by two key factors: the exploitement of rich SAR data archives and the development of processing techniques able to extract information from these datasets. InSAR time series techniques such as permanent scatterers (PS) or SBAS have proven capable of estimating displacements to with 1 mm precision for targets that show a stable electromagnetic signature. At the same time the availability of SAR constellations with a reduced revisit time, such as the X band COSMO-SkyMed (CSK) and TerraSAR-X/PAZ satellites, has reduced the minimum detectable deformation gradient between two neighboring points and improved the theoretical precision given for a network of selected stable pixels. Independently from the applied processing methodology, the main drawback at X-band is the shorter time interval to temporal decorrelation. This effect can be partially mitigated by a short repeat time acquisitions plan. A technique able to deal with distributed scatterers is fundamental for extending the spatial coverage of the coherent area. In this paper we analyze the potential of X-band COSMO-SkyMed short repeat pass interferometry over a rural area in the southern part of Italy for assessing the capabilities and limitations of the Quasi-PS (QPS) technique in an X-band non-optimal scenario.
Keywords
"Decorrelation","Synthetic aperture radar","Interferometry","Coherence","Terrain factors","Monitoring"
Publisher
ieee
Conference_Titel
Geoscience and Remote Sensing Symposium (IGARSS), 2015 IEEE International
ISSN
2153-6996
Electronic_ISBN
2153-7003
Type
conf
DOI
10.1109/IGARSS.2015.7325707
Filename
7325707
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