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., et al.. - STAMPA. - (2013), pp. 33-36. (2013 33rd IEEE International Geoscience and Remote Sensing Symposium, IGARSS 2013 Melbourne, Australia 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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