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High resolution satellite images orthoprojection using dense DEM

机译:使用密集DEM的高分辨率卫星影像正投影

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摘要

According to the recent incoming of high resolution images acquired by the new earth observation satellites (IKONOS, EROS, QUICKBIRD) we are suggested to considered their possible photogrammetric exploitation. The high geometric resolution of such images (up to 0.6 m GSD) and their high radiometric resolution drive us to consider them as possible substitutes of the classic aerial images used for cartographic purposes at the 1:5000/1:2000 scale. In such context we can't omit the heavy incidence of terrain altimetry onto the images georeferencing operations; orthocorrection is necessary to be carried out. This paper, far away from solving the real orthoprojection instances related to the definition of the camera position and attitude, demonstrates as well complex urban DDEM (Dense Digital Elevation Model) completed with volume information of buildings, can improve the planimetric accuracies of the orthocorrected images. A proprietary software, developed by the authors, can automatically extract buildings DEM from a 3D cartography and integrate it with a simple terrain DEM. Results are referred to an orthocorrection carried out by a commercial software. They are certainly conditioned by the out-of-our-control geometric model used by the software itself. The purpose is simply to demonstrate the real improvement of the planimetric positioning obtained using DDEM.
机译:根据新的地球观测卫星(IKONOS,EROS,QUICKBIRD)最近获得的高分辨率图像,我们建议考虑使用它们进行摄影测量。此类图像的高几何分辨率(高达0.6 m GSD)和较高的辐射分辨率使我们认为它们可以替代1:5,000 / 1:2000比例尺用于制图的经典航拍图像。在这种情况下,我们不能在图像地理配准操作中忽略大量的地形测高。需要进行矫正。本文与解决与摄像机位置和姿态的定义有关的真实正投影实例相距甚远,它还演示了具有建筑物体积信息的复杂城市DDEM(密集数字高程模型),可以提高正射校正后图像的平面精度。作者开发的专有软件可以自动从3D制图中提取建筑物DEM,并将其与简单的地形DEM集成。结果是指由商业软件执行的正交校正。它们肯定受软件本身使用的超出控制范围的几何模型的限制。目的只是演示使用DDEM获得的平面定位的真正改进。

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