Fusion of Insar and Gis Data for 3d Building Reconstruction and Change Detection
نویسندگان
چکیده
The new generation of space-borne high resolution SAR sensors such as TerraSAR-X, SAR-Lupe or CosmoSkyMed provides SAR images of 1-3m spatial resolution or even below in special spotlight modes. Naturally, the development of methods to automatically derive detailed cartographic information of both rural and urban areas from this kind of data is a major issue driven by these missions. Since SAR is an active system and largely independent from weather conditions; it is furthermore an attractive imaging technology for rapidly acquiring area-wide information of regions hit by disasters such as floodings, landslides, or earthquakes. Thus, the development of automatic methods for damage analysis or – generally – change detection is another important issue. For such kind of tasks existing Geodata available from Geographic Information Systems (GIS) have to be adjusted with current SAR data. In this paper an approach for 3D building reconstruction based on multi-temporal information fusion by exploiting GIS and InSAR data is presented. Thereby, GIS data consisting of building footprints are used as initial information. The simulation exploits building hypotheses, which are based on the given 2D footprint and an assumed building height, and provides as result synthetic InSAR phases. An iterative adjustment between simulated and measured real InSAR phases enables the reconstruction of the current building shape. Our approach is tested on single-pass airborne InSAR data.
منابع مشابه
3D building reconstruction by exploiting SAR and GIS data
State-of-the-art space-borne high resolution SAR sensors such as TerraSAR-X, SAR-Lupe or Cosmo-SkyMed provide SAR images of 1-3m spatial resolution or even below in special spotlight modes. Due to this high resolution, one major issue of these missions is the development of methods to automatically derive detailed cartographic information from their recorded data by focusing on rural as well as...
متن کاملSmart Filtering of Interferometric Phases for Enhancing Building Reconstruction
The current generation of space borne high resolution SAR sensors provides high spatial resolution as well as interferometric data within short time frames. This makes such data attractive for 3D information extraction. Especially, the operational configuration of TerraSAR-X and TanDEM-X opens up new perspectives for this kind of applications. Despite of this, the interferometric phases still s...
متن کاملRevision and Reconstruction of 3d Building Data by Integrating Starimager/tls Imagery and Complementary Data
Change extraction of building is needed to revise building data effectively. Many change detection algorithms use height difference analysis using temporal data such as LIDAR. However, remarkable changes of buildings cannot be detected in urban dense areas. On the other hand, building textures might change with higher possibility. However, the change cannot be detected due to influences of shad...
متن کاملFusion of Terrestrial Laser Scanner Data and Images for Building Reconstruction
The increasing need and use of 3D GIS particularly in urban areas has produced growing attention on building reconstruction, which attempts to generate geometric and radiometric models of buildings usually from sensory data. The popular data used for building reconstruction are traditionally aerial or satellite images, more recently airborne LIDAR data, or the combination of these data. Extensi...
متن کاملTarget detection Bridge Modelling using Point Cloud Segmentation Obtained from Photogrameric UAV
In recent years, great efforts have been made to generate 3D models of urban structures in photogrammetry and remote sensing. 3D reconstruction of the bridge, as one of the most important urban structures in transportation systems, has been neglected because of its geometric and structural complexity. Due to the UAV technology development in spatial data acquisition, in this study, the point cl...
متن کامل