Digital surface modelling by airborne laser scanning and digital photogrammetry for glacier monitoring

被引:83
作者
Baltsavias, EP [1 ]
Favey, E [1 ]
Bauder, A [1 ]
Bösch, H [1 ]
Pateraki, M [1 ]
机构
[1] ETH Honggerberg, Inst Geodesy & Photogrammetry, CH-8093 Zurich, Switzerland
关键词
change detection; digital photogrammetric station; digital surface model; glacier monitoring; image matching; laser scanning; multi-sensor integration;
D O I
10.1111/0031-868X.00182
中图分类号
P9 [自然地理学];
学科分类号
0705 ; 070501 ;
摘要
The research described in this paper is part of a Swiss National Science Foundation project on "Mass Balance Determination of Glaciers with the Use of State-of-the-art Remote Sensing Methods and a Numerical Flow Model". The remote sensing methods involve automated processing of aerial images and laser scanning and aim to Produce glacier sill-face models with an accuracy of about 0.5 to 1 In over time periods of 1 to 5 years. The Unteraar glacier, in Switzerland, has been chosen to test both methods, because it has been extensively studied by glaciologists. The results from laser scanning and digital photogrammetry were evaluated by comparison with accurate manual measurements from cm analytical Plotter. Various aspects of the laser data processing are discussed, such as system description, Position and attitude determination, transformation to the Swiss map coordinate system, fit of overlapping laser strips and problems encountered. Three digital photogrammetric systems (Match-T, LHS DPW770 and VirtitoZo) were used for surface model generation using image matching. The different matching algorithms and strategies, the matching problems that occurred, for example, clue to low texture, shadows, or steep slopes, and a quantitative cold qualitative evaluation of the results are presented. Finally, a comparison is given between photogrammetry and loser scanning regarding accuracy and point density.
引用
收藏
页码:243 / 270
页数:28
相关论文
共 72 条
[11]   The Radarsat Antarctic Mapping Mission [J].
Choi, EM .
IEEE AEROSPACE AND ELECTRONIC SYSTEMS MAGAZINE, 1999, 14 (05) :3-5
[12]  
Conway H, 1999, GEOGR ANN A, V81A, P509
[13]  
Davies M, 2000, S AFR J SURG, V38, P3
[14]  
DEMUTH M, 1998, GEOGR ANN A, V81, P521
[15]   Velocity structure, flow instability and mass flux on a large Arctic ice cap from satellite radar interferometry [J].
Dowdeswell, JA ;
Unwin, B ;
Nuttall, AM ;
Wingham, DJ .
EARTH AND PLANETARY SCIENCE LETTERS, 1999, 167 (3-4) :131-140
[16]   Airborne surface profiling of glaciers: A case-study in Alaska [J].
Echelmeyer, KA ;
Harrison, WD ;
Larsen, CF ;
Sapiano, J ;
Mitchell, JE ;
DeMallie, J ;
Rabus, B ;
Adalgeirsdottir, G ;
Sombardier, L .
JOURNAL OF GLACIOLOGY, 1996, 42 (142) :538-547
[18]   Comparison of annual changes in winter ERS-1 SAR images and glacier mass balance of Slakbreen, Svalbard [J].
Engeset, RV .
INTERNATIONAL JOURNAL OF REMOTE SENSING, 1999, 20 (02) :259-271
[19]   MASS-BALANCE AND CHANGES OF SURFACE SLOPE, CREVASSE AND FLOW PATTERN OF ERIKBREEN, NORTHERN SPITSBERGEN - AN APPLICATION OF A GEOGRAPHICAL INFORMATION-SYSTEM (GIS) [J].
ETZELMULLER, B ;
VATNE, G ;
ODEGARD, RS ;
SOLLID, JL .
POLAR RESEARCH, 1993, 12 (02) :131-146
[20]   Evaluating the potential of an airborne laser-scanning system for measuring volume changes of glaciers [J].
Favey, E ;
Geiger, A ;
Gudmundsson, GH ;
Wehr, A .
GEOGRAFISKA ANNALER SERIES A-PHYSICAL GEOGRAPHY, 1999, 81A (04) :555-561