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True orthoimage generation by mutual recovery of occlusion areas

机译:通过相互遮挡区域的相互恢复产生真正的正像

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Demand for orthoimages is increasing as a crucial component of geographic information systems (GISs). Orthoimages are geometrically equivalent to planimetric maps, which show true geographic locations of terrain features. To produce orthoimages, geometric distortions from camera tilt and relief displacement from perspective images must be corrected. Traditionally, removing such distortions has been accomplished by differential rectification in a pixel-by-pixel fashion. However, this method cannot produce true orthoimages because of the double-mapping problem. We propose a method of generating patch-based true orthoimages for surface patches in buildings. The proposed method utilizes three-dimensional (3D) building model data. Patches from the data were projected onto aerial images to extract image patches and analysis of the superstructures was performed. Because orthoimages are generated for each building, the orthoimage quality is enhanced when using building data with a high level of detail. Instead of performing the complex visibility analysis of existing approaches, this article identifies occlusion areas based on unit surfaces of buildings and presents mutual recovery of occlusions using multiple images. To evaluate the feasibility of the method, experiments were performed with real datasets: (1) a building with a dome superstructure, (2) high-rise buildings close to each other, and (3) buildings with various shapes.
机译:作为地理信息系统(GIS)的重要组成部分,对正射影像的需求正在增长。正射影像在几何学上等同于平面地图,平面地图显示了地形特征的真实地理位置。为了产生正像,必须纠正由于照相机倾斜而引起的几何畸变和因透视图引起的凸凹位移。传统上,已经通过逐像素的差分整流来消除这种失真。但是,由于双重映射问题,该方法无法产生真实的正像。我们提出一种为建筑物中的表面补丁生成基于补丁的真实正射影像的方法。所提出的方法利用了三维(3D)建筑模型数据。将来自数据的斑块投影到航空图像上以提取图像斑块,并对上部结构进行分析。由于为每个建筑物生成了正像,因此当使用具有高细节水平的建筑物数据时,正像质量会得到提高。本文不执行现有方法的复杂可见性分析,而是根据建筑物的单位表面识别遮挡区域,并使用多幅图像介绍了遮挡的相互恢复。为了评估该方法的可行性,我们对真实的数据集进行了实验:(1)具有圆顶上部结构的建筑物;(2)彼此靠近的高层建筑物;(3)形状各异的建筑物。

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