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Automatic Extraction of Facade Details of Heritage Building Using Terrestrial Laser Scanning Data

机译:利用地面激光扫描数据自动提取文物建筑的立面细节

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The Terrestrial Laser Scanning (TLS) has become an interesting technology in various fields. The architecture and heritage fields benefit more and more of this technology. In the heritage field, TLS data and derived products are used to complete the digital archive of cultural sites all over the world. Among these cultural sites, we deal with the historical Moroccan sites, especially the old Medina. The rehabilitation of the old Medina requires the reconstruction of facade planes. For that purpose, Moroccan authorities need a precise inventory of all facades. The planes extracted from 3D point cloud provide the desired results. However, the manual process is too long and sometimes difficult. Automatic methods of plane recognition including the point cloud segmentation are generally based on geometric approaches which fail to identify some facade details of such heritage buildings. In this context, we propose a new automatic approach of point cloud segmentation. This approach relies on all the components of a colored point--both geometric and radiometric--combining the RGB values, laser intensity and geometric data. Our approach also includes a new method to filter the segmentation result through Delaunay triangulation. The last step of our processing is the facade and detail contour detection that is based on alpha-shape algorithm to find interior and exterior boundaries. Experiments are performed on facades presenting an example of old Medina architecture located in Casablanca’s Medina. Results show the importance of integrating all point cloud components for the detail facades extraction and planes establishment.
机译:陆地激光扫描(TLS)已成为各个领域中一种有趣的技术。建筑和遗产领域越来越多地从这项技术中受益。在遗产领域,TLS数据和派生产品用于完成世界各地文化遗址的数字存档。在这些文化遗址中,我们处理历史悠久的摩洛哥遗址,尤其是古老的麦地那。旧麦地那的修复需要重建立面飞机。为此,摩洛哥当局需要所有外墙的精确清单。从3D点云提取的平面可提供所需的结果。但是,手动过程太长,有时会很困难。包括点云分割在内的自动平面识别方法通常基于无法识别此类遗产建筑某些外观细节的几何方法。在这种情况下,我们提出了一种新的自动点云分割方法。这种方法依赖于色点的所有组成部分-几何和辐射度-结合了RGB值,激光强度和几何数据。我们的方法还包括一种通过Delaunay三角剖分来过滤分割结果的新方法。我们处理的最后一步是立面和细节轮廓检测,该检测基于alpha形状算法来查找内部和外部边界。在立面上进行了实验,展示了位于卡萨布兰卡的麦地那的旧麦地那建筑实例。结果表明,整合所有点云组件对于细节立面提取和平面建立的重要性。

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