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Integration of terrestrial laser scanning and UAV-SFM technique to generate a detailed 3D textured model of a heritage building

机译:陆地激光扫描与UAV-SFM技术的集成,生成遗产建筑的详细3D纹理模型

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The digital twin is among the Top 10 of the strategic technological trends for the period 2007-2019 and it represents a powerful tool for the conservation and enhancement of cultural heritage. It reproduces with "precision" a physical asset, thus allowing to investigate its structure and to analyze the deformations that occur over the years. Various techniques have been introduced to obtain high-resolution 3D models. Among these, the Terrestrial Laser Scanner (TLS) is widely recognized as the gold standard to generate accurate 3D metric reconstructions. TLS allows acquiring a lot of data (point cloud) in a fast way, being not in physical contact with the objects of investigation. By integrating the point cloud coming from the TLS with the one coming from the photogrammetric processes based on the Structure from Motion (SfM) and Multi View Stereo (MVS) techniques, it is possible to obtain a complete model of the object under investigation. The Unmanned Aerial Vehicles (UAV) photogrammetric technique allows to investigate possible elements not detectable by TLS. Both techniques, if well performed, can show comparable accuracies. Data fusion approach, based on multi-sensor and multi-scale integration, was proposed in the present work as the optimal solution to exploit the potential of the various techniques. A high-quality virtual twin from the All Saints' Monastery of Cuti (Puglia) was produced. The resulting detailed 3D textured model was generated by integrating digital photogrammetry with laser scanning data. A discussion on data acquisition procedures, modeling approaches and accuracy of results is provided.
机译:数字双胞胎是期间2007至19年的战略技术趋势的前10位,它代表了文化遗产的保护和增强的有力工具。它再现与“精确”实物资产,从而使研究其结构,并分析出现多年来的变形。各种技术已被引入到获取高分辨率的3D模型。在这些中,陆地激光扫描仪(TLS)被广泛认为是金标准,以产生精确的三维度量重建。 TLS允许以快速的方式获取大量的数据(点云)的,在调查对象身体接触不。通过点云从同一个基于从运动(SFM)和多视点立体(MVS)技术结构的摄影过程来的TLS来整合,就可以得到所研究的对象的完整模型。在无人驾驶飞行器(UAV)的摄影技术允许调查不通过TLS检测可能的元件。这两种技术,如果很好地进行,可以显示出相当的精度。数据融合方法,基于多传感器,多大规模集成,在本工作作为最优解以利用的各种技术的潜力,提出了。从的CuTi诸寺院(普利亚)一种高品质的虚拟双制作。将所得的详细3D纹理化是通过用激光扫描数据集成数字摄影生成的模型。在数据采集过程的讨论,建模方法,并提供结果的准确性。

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