DocumentCode :
575874
Title :
L-band InSAR decorrelation analysis in volcanic terrains using airborne LiDAR data and in situ measurements: The case of the Piton de la Fournaise volcano, France
Author :
Sedze, Mélanie ; Heggy, Essam ; Bretar, Frédéric ; Berveiller, Daniel ; Jacquemoud, Stéphane
Author_Institution :
Inst. de Phys. du Globe de Paris, Paris, France
fYear :
2012
fDate :
22-27 July 2012
Firstpage :
3907
Lastpage :
3910
Abstract :
We combine ALOS-PALSAR coherence images with airborne LiDAR data, both acquired over the Piton de la Fournaise volcano (Reunion Island, France), to study the main errors affecting repeat-pass InSAR measurements and understand their causes. The high resolution DTM generated using LiDAR data is used to subtract out the topographic contribution from the interferogram and to improve the radar coherence maps. The relationship between LiDAR intensity and radar coherence is then analyzed over several typical volcanic surfaces: it helps to evaluate the coherence loss terms. Additionally, the geometric and physical properties of these surfaces have been measured in situ. Coherence deteriorates over pyroclastic deposits and rough lava flows due to volume and surface scattering. In the presence of vegetation, it is directly related to plant density: the higher the Leaf Area Index (LAI), the lower the coherence. The accuracy of InSAR measurements strongly decreases for LAI higher than 7.
Keywords :
airborne radar; geophysical image processing; optical radar; radar interference; terrain mapping; topography (Earth); vegetation; volcanology; ALOS-PALSAR coherence images; France; L-band InSAR decorrelation analysis; Leaf Area Index; LiDAR intensity; Piton de la Fournaise volcano; Reunion Island; airborne LiDAR data; coherence loss terms; geometric properties; high resolution DTM; interferogram; physical properties; plant density; pyroclastic deposits; radar coherence maps; repeat-pass InSAR measurements; rough lava flows; surface scattering; topographic contribution; vegetation; volcanic surfaces; volcanic terrains; volume scattering; Coherence; Laser radar; Rough surfaces; Surface roughness; Surface topography; Vegetation mapping; LiDAR; Piton de la Fournaise volcano; Radar coherence;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Geoscience and Remote Sensing Symposium (IGARSS), 2012 IEEE International
Conference_Location :
Munich
ISSN :
2153-6996
Print_ISBN :
978-1-4673-1160-1
Electronic_ISBN :
2153-6996
Type :
conf
DOI :
10.1109/IGARSS.2012.6350558
Filename :
6350558
Link To Document :
بازگشت