Comprehensive approach for building outline extraction from LiDAR data with accent to a sparse laser scanning point cloud

Petr Hofman, M. Potůčková
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引用次数: 4

Abstract

The method of building outline extraction based on segmentation of airborne laser scanning data is proposed and tested on a dataset comprising 1,400 buildings typical for residential and industrial urban areas. The algorithm starts with setting a special threshold to separate building from bare earth points and low objects. Next, local planes are fitted to each point using RANSAC and further refined by least squares adjustment. A normal vector is assigned to each point. Similarities among normal vectors are evaluated in order to assemble planar or curved roof segments. Finally, building outlines are formed from detected segments using the a-shapes algorithm and further regularized. The extracted outlines were compared with reference polygons manually derived from the processed laser scanning point cloud and orthoimages. Area-based evaluation of accuracy of the proposed method revealed completeness and correctness of 87 % and 97 %, respectively, for the test dataset. The influence of parameters like number of points per roof segment, complexity of the roof structure, roof type, and overlap with vegetation on accuracy was evaluated and discussed.
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基于稀疏激光扫描点云的激光雷达数据建筑轮廓提取综合方法
提出了一种基于机载激光扫描数据分割的建筑物轮廓提取方法,并在包含1400栋典型住宅和工业城市建筑的数据集上进行了测试。该算法首先设置一个特殊的阈值,将建筑物与裸露的地面点和低物体分开。然后,使用RANSAC对每个点进行局部平面拟合,并通过最小二乘平差进一步细化。每个点都有一个法向量。评估法向量之间的相似性,以便组装平面或弯曲的屋顶段。最后,利用a形算法从检测到的片段中生成建筑轮廓,并进一步正则化。将提取的轮廓与人工提取的参考多边形进行比较,这些参考多边形是由经过处理的激光扫描点云和正射影获得的。基于区域的准确度评估表明,对于测试数据集,该方法的完整性和正确性分别为87%和97%。评估和讨论了每个屋顶段的点数、屋顶结构的复杂性、屋顶类型以及与植被的重叠等参数对精度的影响。
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