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Voxel segmentation-based 3D building detection algorithm for airborne LIDAR data

机译:基于体素分割的机载LIDAR数据3D建筑物检测算法

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摘要

Among traditional Light Detection And Ranging (LIDAR) data representations such as raster grid, triangulated irregular network, point clouds and octree, the explicit 3D nature of voxel-based representation makes it a promising alternative. Despite the benefit of voxel-based representation, voxel-based algorithms have rarely been used for building detection. In this paper, a voxel segmentation-based 3D building detection algorithm is developed for separating building and nonbuilding voxels. The proposed algorithm first voxelizes the LIDAR point cloud into a grayscale voxel structure in which the grayscale of the voxel corresponds to the quantized mean intensity of the LIDAR points within the voxel. The voxelized dataset is segmented into multiple 3D-connected regions depending on the connectivity and grayscale similarity among voxels. The 3D-connected regions corresponding to the building roof and facade are detected sequentially according to characteristics such as their area, density, elevation difference and location. The obtained results for the detected buildings are evaluated by the LIDAR data provided by working group III/4 of ISPRS, which demonstrate a high rate of success. Average completeness, correctness, quality, and kappa coefficient indexes values of 90.0%, 96.0%, 88.1% and 88.7%, respectively, are obtained for buildings.
机译:在传统的光检测和测距(LIDAR)数据表示形式(例如栅格网格,不规则三角网,点云和八叉树)中,基于体素的表示的显式3D性质使其成为一种有希望的替代方法。尽管基于体素的表示有很多好处,但基于体素的算法很少用于建筑物检测。本文提出了一种基于体素分割的3D建筑物检测算法,用于分离建筑物体素和非建筑物体素。提出的算法首先将LIDAR点云体素化为灰度体素结构,其中体素的灰度级对应于体素内LIDAR点的量化平均强度。根据体素之间的连通性和灰度相似度,将体素化的数据集划分为多个3D连接区域。根据建筑物屋顶和立面的3D连接区域,根据其面积,密度,高低差和位置等特征依次检测。 ISPRS第III / 4工作组提供的LIDAR数据对检测到的建筑物的获得结果进行了评估,证明了成功率很高。建筑物的平均完整性,正确性,质量和kappa系数指标值分别达到90.0%,96.0%,88.1%和88.7%。

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  • 期刊名称 other
  • 作者单位
  • 年(卷),期 -1(13),12
  • 年度 -1
  • 页码 e0208996
  • 总页数 26
  • 原文格式 PDF
  • 正文语种
  • 中图分类
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  • 入库时间 2022-08-21 11:06:13

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