This paper describes a workflow for the DEM extraction from unrectified satellite stereo scenes, its visualization and integration in GIS environment. The results obtained using a stereo scene acquired by EOS-AM1/ASTER over Switzerland are presented and commented. The images are oriented with a rigorous photogrammetric model for CCD linear array sensors developed at IGP (ETH Zurich). The model estimates the sensor internal and external orientation with least squares adjustment, using a suitable number of ground control points. For the DEM generation, the points are automatically extracted in the images at sub-pixel accuracy with a least squares matching algorithm and their 3D coordinates are then calculated with forward intersection using the external and internal parameters estimated during the image orientation. The accuracy of the DEM was evaluated in three test areas using the DHM25 by Swisstopo as reference. The RMSE of the 3D distance between the recovered and reference terrain models is in the order of 1 pixel. After the surface generation, the terrain model is used for further investigations within a commercial GIS package. This includes not only the DEM analysis and comparison with already available geodata, but also the integration of cartographic information (i.e. existing vector features). The achieved results demonstrate the great potential of ASTER satellite imagery for geomatic applications at medium scales. Finally the DEM is imported in commercial software for a photo-realistic visualization.
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