Combining airborne photographs and spaceborne SAR data to monitor temperate glaciers: Potentials and limits

被引:45
作者
Trouye, Emmanuel [1 ]
Vasile, Gabriel
Gay, Michel
Bombrun, Lionel
Grussenmeyer, Pierre
Landes, Tania
Nicolas, Jean-Marie
Bolon, Philippe
Petillot, Ivan
Julea, Andreea
Valet, Lionel
Chanussot, Jocelyn
Koehl, Mathieu
机构
[1] Univ Savoie, Lab Informat Syst Traitement Informat & Connaissa, F-74944 Annecy Le Vieux, France
[2] CNRS, Inst Natl Polytech Grenoble, Grenoble Image Parole Signal & Automat Lab, F-38402 St Martin Dheres, France
[3] Inst Natl Sci Appl Strasbourg, UMR 694, Equipe Photogrammetrie & Geomat Modeles, F-67084 Strasbourg, France
[4] Inst Natl Sci Appl Strasbourg, UMR 694, Equipe Simulat Architecture Urbanisme & Paysage P, F-67084 Strasbourg, France
[5] Inst Natl Sci Appl Strasbourg, UMR 694, Equipe Geomat, F-67084 Strasbourg, France
[6] Ecole Natl Super Telecommun Bretagne, Dept Traitement Signal & Images, GET Telecom Paris, F-75013 Paris, France
[7] Univ Savoie, Lab Informat Syst Traitement Informat & Connaissa, F-74944 Annecy Le Vieux, France
[8] Space Sci Inst, Bucharest 76900, Romania
来源
IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING | 2007年 / 45卷 / 04期
关键词
airborne photogrammetry; digital terrain model (DTM); synthetic aperture radar (InSAR) interferometry; temperate glacier; velocity field; ADAPTIVE-NEIGHBORHOOD TECHNIQUE; RADAR INTERFEROMETRY; SURFACE VELOCITIES; ICE; MOUNTAIN; IMAGES; FLOW; HAZARDS; MOTION; GLACE;
D O I
10.1109/TGRS.2006.890554
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Monitoring temperate glacier activity has become more and more necessary for economical and security reasons and as an indicator of the local effects of global climate change. Remote sensing data provide useful information on such complex geophysical objects, but they require specific processing techniques to cope with the difficult context of moving and changing features in high-relief areas. This paper presents the first results of a project involving four laboratories developing and combining specific methods to extract information from optical and synthetic aperture radar (SAR) data. Two different information sources are processed, namely: 1) airborne photography and 2) spaceborne C-band SAR interferometry. The difficulties and limitations of their processing in the context of Alpine glaciers are discussed and illustrated on two glaciers located in the Mont-Blanc area. The results obtained by aerial triangulation techniques provide digital terrain models with an accuracy that is better than 30 cm, which is compatible with the computation of volume balance and useful for precise georeferencing and slope measurement updating. The results obtained by SAR differential interferometry using European Remote Sensing Satellite images show that it is possible to measure temperate glacier surface velocity fields from October to April in one-day interferograms with approximately 20-m ground sampling. This allows to derive ice surface strain rate fields required to model the glacier flow. These different measurements are complementary to results obtained during the summer from satellite optical data and ground measurements that are available only in few accessible points.
引用
收藏
页码:905 / 924
页数:20
相关论文
共 54 条
[41]   Interferometric radar observations of Glaciar San Rafael, Chile [J].
Rignot, E ;
Foster, R ;
Isacks, B .
JOURNAL OF GLACIOLOGY, 1996, 42 (141) :279-291
[42]   THEORY AND DESIGN OF INTERFEROMETRIC SYNTHETIC APERTURE RADARS [J].
RODRIGUEZ, E ;
MARTIN, JM .
IEE PROCEEDINGS-F RADAR AND SIGNAL PROCESSING, 1992, 139 (02) :147-159
[43]  
Rosen P.A., 2004, Eos, Transactions American Geophysical Union, V85, P47, DOI [10.1029/2004EO050004, DOI 10.1029/2004EO050004, 10.1029/2004EO050004.]
[44]   Synthetic aperture radar interferometry -: Invited paper [J].
Rosen, PA ;
Hensley, S ;
Joughin, IR ;
Li, FK ;
Madsen, SN ;
Rodríguez, E ;
Goldstein, RM .
PROCEEDINGS OF THE IEEE, 2000, 88 (03) :333-382
[45]  
SHAROV AI, 2002, PHOTOGRAMMETRIC COMP, V34, pA324
[46]  
STERZAI P, 2003, P EGS AGU EUG JOINT
[47]   Advanced larynx cancer. [J].
Strome S.E. ;
Weinman E.C. .
Current Treatment Options in Oncology, 2002, 3 (1) :11-20
[48]   Glacier motion estimation using SAR offset-tracking procedures [J].
Strozzi, T ;
Luckman, A ;
Murray, T ;
Wegmüller, U ;
Werner, CL .
IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING, 2002, 40 (11) :2384-2391
[49]   Atmospheric propagation heterogeneities revealed by ERS-1 interferometry [J].
Tarayre, H ;
Massonnet, D .
GEOPHYSICAL RESEARCH LETTERS, 1996, 23 (09) :989-992
[50]   Improving phase unwrapping techniques by the use of local frequency estimates [J].
Trouve, E ;
Nicolas, JM ;
Maitre, H .
IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING, 1998, 36 (06) :1963-1972