首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >FUSION OF TLS AND UAV PHOTOGRAMMETRY DATA FOR POST-EARTHQUAKE 3D MODELING OF A CULTURAL HERITAGE CHURCH
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FUSION OF TLS AND UAV PHOTOGRAMMETRY DATA FOR POST-EARTHQUAKE 3D MODELING OF A CULTURAL HERITAGE CHURCH

机译:TLS和无人机摄影数据的融合,用于文化遗产教会的地震后3D建模

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Nowadays, the necessity of heritage documentation is essential for monitoring, maintenance, and understanding needed for conservation. The survey phase has been considerably improved using cutting-edge technologies such as Unmanned Aerial Vehicles (UAV) and Terrestrial Laser Scanners (TLS). Both of these technologies have been applied in heritage documentation individually or combined. Heritage documentation in a post-natural disaster is a situation that requires rapid data acquisition on a hazardous field. On 12th of June 2017 an earthquake (Mw?=?6.3), south of Lesvos island, Greece occurred, which was devastating for the Vrisa village destroying, among many other buildings the main church. The Greek State decided from the first moment to restore the whole village, which was proclaimed as a “traditional settlement” since 2002, in its original place starting from the church and the school due to the symbolic meaning that those have to a local community. For this purpose, a 3D model of the church was requested by the authorities for damage assessment. In this paper TLS and UAV photogrammetry has been used in an integrated design to rapidly facilitate the acquisition of the whole church, eliminating all possible occlusions. The TLS was exploited for the acquisition of the facades while the UAV was used for the acquisition of the roof. The recent improvement of the post-processing algorithms provided the ability to implement the fusion of TLS and UAV models and deliver an accurate 3D model of the whole church the same day that the survey was conducted.
机译:如今,遗产文件的必要性对于保护所需的监视,维护和理解至关重要。使用诸如无人机(UAV)和地面激光扫描仪(TLS)等尖端技术已大大改善了调查阶段。这两种技术已单独或组合应用于遗产文献中。自然灾害后的遗产记录是需要在危险区域快速采集数据的情况。 2017年6月12日,希腊莱斯沃斯岛以南发生地震(Mw?=?6.3),这是毁灭性的Vrisa村庄毁坏,以及其他主要教堂建筑。希腊国立政府从一开始就决定恢复整个村庄,自2002年以来被宣布为“传统定居点”,其最初的位置是从教堂和学校开始,因为这对当地社区具有象征意义。为此,当局要求教会使用3D模型进行损害评估。在本文中,TLS和UAV摄影测量法已用于集成设计中,以快速促进整个教会的获取,消除了所有可能的遮挡。 TLS用于获取立面,而无人机则用于获取屋顶。后处理算法的最新改进提供了实现TLS和UAV模型融合的能力,并在进行调查的当天提供了整个教堂的准确3D模型。

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