首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >MODELLING A CELL TOWER USING SFM: AUTOMATED DETECTION OF STRUCTURAL ELEMENTS FROM SKELETON EXTRACTION ON A POINT CLOUD
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MODELLING A CELL TOWER USING SFM: AUTOMATED DETECTION OF STRUCTURAL ELEMENTS FROM SKELETON EXTRACTION ON A POINT CLOUD

机译:使用SFM建模细胞塔:自动检测点云上的骨架提取结构元素

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The surveying and management of telecommunication towers poses a series of engineering challenges. Not only they must be regularly inspected for the purpose of checking for issues that require maintenance interventions, but they are often sub-let by their owners to communication companies, requiring a survey of the many (several thousand per company) installed appliances to check that they respect the established contracts. This requires a surveying methodology that is fast and possibly automated. Photogrammetric techniques using UAV-mounted cameras seem to offer a solution that is both suitable and economical. Our research team was asked to evaluate whether, from the information acquired by small drones it was possible to obtain geometric information on the structure, with what degree of accuracy and what level of detail. The workflow of this process is naturally articulated in three steps: the acquisition, the construction of the point cloud, and the extraction of geometries. The case study is a tower carrying antennas owned by several operators and placed in the industrial district of Cagliari. The article examines the problems found in modelling such structures using point clouds derived from the Structure-from-Motion technique, in order to obtain a model of nodes and beams suitable for the reconstruction of the structure’s geometric elements, and possibly for a finite elements analysis or for populating GIS and BIM, either automatically or with minimal user intervention. In order to achieve this, we have used voxelization and skeleton extraction algorithms to obtain a 3D graph of the structure. The analysis of the results was carried out by varying the parameters relating to the voxel size, which defines the resolution, and the density of the points contained inside each voxel.
机译:电信塔的测量和管理造成了一系列工程挑战。不仅要检查所需的问题,而且必须定期检查他们的问题,但他们经常由他们的业主进行通信公司,需要调查许多(每公司数千个)安装的设备来检查他们尊重既定的合同。这需要测量方法,这些方法是快速和可能自动化的。摄影图使用UAV安装相机的技术似乎提供了一种适合和经济的解决方案。我们的研究团队被要求评估来自小型无人机所获得的信息是否可以获得结构的几何信息,精度如何以及细节水平。该过程的工作流程在三个步骤中自然阐述:采集,点云的构造以及几何形状的提取。案例研究是由多个运营商拥有的塔架天线,并将其放在卡利亚里的工业区。本文研究了使用从结构 - 从运动技术的点云建模这种结构的问题,以便获得适合于结构的几何元素的重建的节点和光束的模型,并且可能用于有限元分析或者用于自动或最小的用户干预填充GIS和BIM。为了实现这一目标,我们使用了体之化和骨架提取算法来获得结构的3D图。通过改变与体素尺寸有关的参数来进行结果的分析,该参数定义了分辨率,以及每个体素内含有的点的密度。

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