Title :
Research on DEM and DOM generation with airborne InSAR data
Author :
Yue, Xijuan ; Han, Chunming
Author_Institution :
Center for Earth Obs. & Digital Earth, Beijing, China
Abstract :
Three-dimensional information of each point on the image can be obtained by high-precision positioning based on airborne synthetic aperture radar interferometry (InSAR) data and high-precision Digital Elevation Model (DEM), and Digital Orthophoto Map (DOM) can also be obtained. Hence, the high-precision positioning is an important means to solve topographic mapping in large area with few control points, and has important significance for the unexpected natural disaster monitoring and evaluation of rapid response and quantitative analysis. The airborne InSAR high-precision positioning experiment which covers 4 strips 76 scenes 472 square kilometers is completed based on 0.5 m resolution airborne InSAR data by using self-developed Airborne InSAR Positioning Software System in Jiangyou Sichuan province, and the result meets 1:10000 scale DEM and DOM mapping accuracy requirements.
Keywords :
airborne radar; cartography; digital elevation models; geophysical image processing; geophysics computing; radar interferometry; synthetic aperture radar; 3D information; DEM generation; DOM generation; Jiangyou Sichuan province; airborne InSAR data; airborne synthetic aperture radar interferometry data; digital elevation model; digital orthophoto map; high-precision positioning; self-developed airborne InSAR positioning software system; topographic mapping; unexpected natural disaster evaluation; unexpected natural disaster monitoring; Accuracy; Atmospheric modeling; Calibration; Earth; Radar antennas; Solid modeling; Synthetic aperture radar; Airborne InSAR data; DEM; DOM; Three-dimensional positioning model; high-precision positioning;
Conference_Titel :
Geomatics for Integrated Water Resources Management (GIWRM), 2012 International Symposium on
Conference_Location :
Lanzhou, Gansu
Print_ISBN :
978-1-4673-1283-7
DOI :
10.1109/GIWRM.2012.6349590