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A DATA DRIVEN METHOD FOR BUILDING RECONSTRUCTION FROM LiDAR POINT CLOUDS

机译:利用LIDAR点云构建重建的数据驱动方法

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Airborne laser scanning, commonly referred to as LiDAR, is a superior technology for three-dimensional data acquisition from Earth's surface with high speed and density. Building reconstruction is one of the main applications of LiDAR system which is considered in this study. For a 3D reconstruction of the buildings, the buildings points should be first separated from the other points such as; ground and vegetation. In this paper, a multi-agent strategy has been proposed for simultaneous extraction and segmentation of buildings from LiDAR point clouds. Height values, number of returned pulse, length of triangles, direction of normal vectors, and area are five criteria which have been utilized in this step. Next, the building edge points are detected using a new method named 'Grid Erosion'. A RANSAC based technique has been employed for edge line extraction. Regularization constraints are performed to achieve the final lines. Finally, by modelling of the roofs and walls, 3D building model is reconstructed. The results indicate that the proposed method could successfully extract the building from LiDAR data and generate the building models automatically. A qualitative and quantitative assessment of the proposed method is then provided.
机译:Airborne激光扫描,通常称为LIDAR,是从地球表面具有高速和密度的三维数据采集的优越技术。建筑重建是该研究中考虑的LIDAR系统的主要应用之一。对于建筑物的3D重建,建筑点应该首先与其他点分开,如;地面和植被。本文提出了一种多助理策略,用于同时提取和分割LIDAR点云的建筑物。高度值,返回脉冲的数量,三角形长度,正常向量方向,以及区域是在该步骤中使用的五个标准。接下来,使用名为“网格侵蚀”的新方法检测到建筑边缘点。基于RANSAC的技术已经用于边缘线提取。执行正则化约束以实现最终线。最后,通过建模屋顶和墙壁,重建3D构建模型。结果表明,该方法可以成功从LIDAR数据中提取建筑物并自动生成建筑模型。然后提供了对所提出的方法的定性和定量评估。

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