We focused on the joint exploitation of satellite and ground-based technologies in order to understand the kinematic behavior of landslides and subsidence phenomena relevant to different test sites in Europe. In this context, we efficiently exploited C-band and X-band satellite and ground-based SAR data for the investigation of the temporal and spatial pattern of ground deformations caused by natural and human-induced hazards. The present work has been conducted within the FP7-EU DORIS project.
The European DORIS downstream service as a multi-scale system for landslides and subsidence risk management / Manunta M.; Calo F.; Ojha C.; Ardizzone F.; Guzzetti F.; Mondini A.C.; Reichenbach P.; Bianchini S.; Casagli N.; Ciampalini A.; Del Ventisette C.; Moretti S.; Garcia I.; Herrera G.; Mateos R.M.; Fusi B.; Graniczny M.; Kowalski Z.; Piatkowska A.; Surala M.; Retzo H.; Strozzi T.; Colombo D.; Mora O.; Sanchez C.. - STAMPA. - (2013), pp. 33-36. (Intervento presentato al convegno 2013 33rd IEEE International Geoscience and Remote Sensing Symposium, IGARSS 2013 tenutosi a Melbourne, Australia nel 21-26 July 2013) [10.1109/IGARSS.2013.6721085].
The European DORIS downstream service as a multi-scale system for landslides and subsidence risk management
BIANCHINI, SILVIA;CASAGLI, NICOLA;CIAMPALINI, ANDREA;DEL VENTISETTE, CHIARA;MORETTI, SANDRO;
2013
Abstract
We focused on the joint exploitation of satellite and ground-based technologies in order to understand the kinematic behavior of landslides and subsidence phenomena relevant to different test sites in Europe. In this context, we efficiently exploited C-band and X-band satellite and ground-based SAR data for the investigation of the temporal and spatial pattern of ground deformations caused by natural and human-induced hazards. The present work has been conducted within the FP7-EU DORIS project.File | Dimensione | Formato | |
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Manunta et al IEEE 2013.pdf
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