DocumentCode :
1400992
Title :
Effect of DEM Uncertainty on the Positional Accuracy of Airborne Imagery
Author :
Beekhuizen, Johan ; Heuvelink, Gerard B M ; Biesemans, Jan ; Reusen, Ils
Author_Institution :
Land Dynamics Group, Wageningen Univ., Wageningen, Netherlands
Volume :
49
Issue :
5
fYear :
2011
fDate :
5/1/2011 12:00:00 AM
Firstpage :
1567
Lastpage :
1577
Abstract :
The geometric and atmospheric processing of airborne imagery is a complex task that involves many correction steps. Geometric correction is particularly challenging because slight movements of the aircraft and small changes in topography can have a great impact on the geographic positioning of the processed imagery. This paper focused on how uncertainty in topography, represented by a digital elevation model (DEM), propagates through the geometric correction process. We used a Monte Carlo analysis, in which, first, a geostatistical uncertainty model of the DEM was developed to simulate a large number of DEM realizations. Next, geometric correction was run for each of the simulated DEMs. The analysis of the corrected images and their variability provided valuable information about the positional accuracy of the corrected image. The method was applied to a hyperspectral image of a mountainous area in Calabria, Italy, by using the Shuttle Radar Topography Mission-DEM as the topographic information source. We found out that the uncertainty varies greatly over the whole terrain and is substantial at large off-nadir viewing angles in the across-track direction. Also, positional uncertainty is larger in rugged terrains. We conclude that Monte Carlo uncertainty propagation analysis is a valuable technique in deriving quality layers that inform end users about the positional accuracy of airborne imagery, and we recommend that it is integrated in the operational processing steps of the Processing and Archiving Facilities.
Keywords :
Monte Carlo methods; digital elevation models; error analysis; geophysical image processing; measurement errors; remote sensing; topography (Earth); Calabria; DEM uncertainty effects; Italy; Monte Carlo analysis; Shuttle Radar Topography Mission DEM; airborne imagery atmospheric processing; airborne imagery geometric processing; airborne imagery positional accuracy; aircraft changes; aircraft movements; digital elevation model; geometric correction; geostatistical uncertainty model; hyperspectral image; image geographic positioning; mountainous area; off nadir viewing angles; topographic information source; topography uncertainty propagation; Accuracy; Analytical models; Correlation; Kernel; Monte Carlo methods; Pixel; Uncertainty; Digital elevation model (DEM); Monte Carlo simulation; error propagation; geometric correction; georeferencing; geostatistics; orthorectification; uncertainty;
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
Publisher :
ieee
ISSN :
0196-2892
Type :
jour
DOI :
10.1109/TGRS.2010.2083672
Filename :
5664779
Link To Document :
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