Títol
Ground-based polarimetric SAR interferometry for the monitoring of terrain displacement phenomena-part II: applications
Autor/s
Iglesias, Rubén; et al.,
Any
2015
Mes
3
Tesi universitat lectura
-
Universitat de lectura
Tesi director
-
Tesi codirector
-
Títol de la revista
IEEE Journal of Selected Topics in Applied Earth Observation
Pàgines
994-1007
Volum de la revista
8
Numero revista
-
Idioma
Anglès
ISBN / ISSN
19391404
Titol obra
-
Editorial obra
-
Llocpub Obra
-
DOI
10.1109/JSTARS.2014.2366711

Accés text complet en obert
Paraules clau
Differential synthetic aperture radar (SAR) Interferometry (DInSAR), Displacement monitoring, Frequency modulated continuous wave (FMCW) radar, Ground-based SAR (GB-SAR), Ground-based SAR interferometry (GBInSAR), Persistent scatterer interferometry (PSI), Polarimetric SAR interferometry (PolInSAR), Steepest linear frequency modulated continuous wave (SLFMCW) radar

Resum
(ENG) Urban subsidence and landslides are among the greatest hazards for people and infrastructure safety and they require an especial attention to reduce their associated risks. In this framework, ground-based synthetic aperture radar (SAR) interferometry (GB-InSAR) represents a cost-effective solution for the precise monitoring of displacements. This work presents the application of GB-InSAR techniques, particularly with the RiskSAR sensor and its processing chain developed by the Remote Sensing Laboratory (RSLab) of the Universitat Politècnica de Catalunya (UPC), for the monitoring of two different types of ground displacement. An example of urban subsidence monitoring over the village of Sallent, northeastern of Spain, and an example of landslide monitoring in El Forn de Canillo, located in the Andorran Pyrenees, are presented. In this framework, the key processing particularities for each case are deeply analyzed and discussed. The linear displacement maps and time series for both scenarios are showed and compared with in-field data. For the study, fully polarimetric data acquired at X-band with a zero-baseline configuration are employed in both scenarios. The displacement results obtained demonstrate the capabilities of GB-SAR sensors for the precise monitoring of ground displacement phenomena.