Obtaining digital elevation data in different terrain and physiognomy regions with spaceborne InSAR

来源 :Chinese Science Bulletin | 被引量 : 0次 | 上传用户:gx2784500
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Synthetic Aperture Radar Interferometry (for short, InSAR) is a new kind of earth observation technology, which has obtained great development in recent ten years and has a great development potential and successful future. In this note, three typical regions with different physiognomies and terrains have been selected as study regions to extract their Digital Elevation Model (OEMs). Compared with the existing 1 : 250000 DEM and by analyzing their results, we have obtained its accuracy and applicable scopes. The results show that in the region (plains, mountains or highlands) with dry surface and sparse vegetation, because of the better correlatability of images, the DEM obtained by InSAR is evidently better than the existing 1 : 250000 DEM and the accuracy can reach 4-6m; in the thick-vegetation-covering region, correlatability between images descends and the accuracy of InSAR DEM can only reach about 30 m worse than its existing 1:250000 DEM; in the middle covering field, the accuracy of InSAR DEM with Synthetic Aperture Radar Interferometry (for short, InSAR) is a new kind of earth observation technology, which has obtained great development in recent ten years and has a great development potential and successful future. In this note, three typical regions with different physiognomies and terrains Compared with study regions to extract their Digital Elevation Model (OEMs). Compared with the existing 1: 250000 DEM and by analyzing their results, we have obtained its accuracy and applicable scopes. The results show that in the region (plains, mountains or highlands) with dry surface and sparse vegetation, because of the better correlatability of images, the DEM obtained by InSAR is evidently better than the existing 1: 250000 DEM and the accuracy can reach 4-6m; in the thick-vegetation-covering region , correlatability between images descends and the accuracy of InSAR DEM can only reach about 30 m worse than its existing 1: 250000 DEM; in the middle covering field, the accurac y of InSAR DEM with
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