Use of UAS and TLS technology in 3D modeling of constructions with complex architecture

Nova Geodesia Pub Date : 2022-12-28 DOI:10.55779/ng2474
E. Șuba, M. Nap, Silvia Chiorean, I. Pop, F. Matei, T. Sălăgean
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引用次数: 1

Abstract

3D building models are widely used in many applications. The use of terrestrial laser scanning and UAS photogrammetry for 3D modelling is a popular practice especially for constructions with complex architecture. The present article presents an example of using these technologies successfully for 3D modelling of the Episcopal Cathedral of the Holy Trinity from Baia Mare, Romania.  A number of 51 control and verification points were determined by the closed circuit travel method and the intersection method. All measurements were processed in Terramodel software. The control points used in the georeferencing of the scans were materialized by metal stakes and the verification points were materialized by reflective targets. Depending on the construction configuration, the field of view and the minimum/maximum scanning distances were subsequently set. A total of 45 scans were performed to model the entire cathedral. The photogrammetric flight was performed in RTK mode, with corrections being transmitted from the DJI D-RTK-2 Mobile Station base to the RTK drone. All retrieved frames had geolocation and frame orientation elements recorded by the IMU module. A total number of 222 photograms were taken, as a result of a double grid photogrammetric flight, with the camera oriented at 60 degrees, but also as a result of manual acquisition by performing orbital flights at different heights: an orbital flight on the ground floor, an orbital flight at the level of about 40 meters and an orbital flight around the tower.
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UAS和TLS技术在复杂建筑三维建模中的应用
三维建筑模型被广泛应用于许多领域。使用地面激光扫描和UAS摄影测量进行三维建模是一种流行的做法,特别是对于具有复杂结构的建筑物。本文介绍了一个例子,使用这些技术成功的三维建模的圣公会大教堂的圣三位一体从巴亚马雷,罗马尼亚。采用闭环行程法和交点法确定了51个控制点和验证点。所有测量均在Terramodel软件中处理。用于扫描地理参考的控制点由金属桩实现,验证点由反射目标实现。根据结构配置,随后设置视场和最小/最大扫描距离。整个大教堂共进行了45次扫描。摄影测量飞行以RTK模式执行,校正从大疆D-RTK-2移动站基地传送到RTK无人机。所有检索到的帧都有IMU模块记录的地理位置和帧方向元素。总共拍摄了222张照片,这是双网格摄影测量飞行的结果,相机的方向为60度,但也是通过在不同高度进行轨道飞行的手动获取的结果:在地面进行轨道飞行,在大约40米的高度进行轨道飞行,并在塔周围进行轨道飞行。
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