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Automated identification of voids in three-dimensional point clouds

机译:自动识别三维点云中的空隙

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In the construction of three-dimensional (3D) point clouds from multi-view aerial imagery, voids in the point cloud often exist where multiple views of the area were not obtained during collection. A method is presented for identifying these voids. In this work, point clouds are derived from oblique aerial imagery using multi-view techniques from the photogrammetry and computer vision communities. A voxel-based approach is used to partition the 3D space and each voxel is classified as containing or not containing derived points. Using the imagery and the position of the camera, it is possible to analyze what the cameras can and cannot see, thereby making it possible to label the voxels as occupied, free, and non-classified spaces. Voids in the data will manifest themselves in the non-classified voxels. This method has been tested on high-frame-rate oblique aerial imagery captured over Rochester, NY as well as synthetic data sets. Also presented is a unique synthetic dataset for 3D reconstruction. The data set, created with the Rochester Institute of Technology's Digital Imaging and Remote Sensing Image Generation (DIRSIG) software, provides high-fidelity radiometric data in addition to known 3D locations and surface normals for each pixel location in an image scene. This data set is available to the community for use in their related research.
机译:在从多视图航空影像构建三维(3D)点云时,点云中经常存在空隙,在收集过程中无法获得该区域的多视图。提出了一种识别这些空隙的方法。在这项工作中,点云是使用摄影测量学和计算机视觉社区的多视图技术从倾斜的航空影像中得出的。基于体素的方法用于划分3D空间,每个体素被分类为包含或不包含派生点。使用图像和摄像机的位置,可以分析摄像机可以看到和看不到的内容,从而可以将体素标记为已占用,自由和未分类的空间。数据中的空隙将在未分类的体素中显示出来。该方法已经在纽约州罗切斯特市捕获的高帧速倾斜航拍图像以及合成数据集上进行了测试。还介绍了用于3D重建的独特合成数据集。该数据集是由罗彻斯特理工学院的数字成像和遥感图像生成(DIRSIG)软件创建的,除了提供已知3D位置和图像场景中每个像素位置的表面法线外,还提供了高保真辐射数据。该数据集可供社区使用,以进行相关研究。

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