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UAS multi-camera rig for post-earthquake damage 3D Geovisualization of Vrisa village

机译:UAS多摄像机钻机用于地震后损坏的3D地理可视化Vrisa村

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Last years the role of Unmanned Aerial Systems is increasing in a wide variety of scientific aspects that need fast and reliable geodata. Nowadays, the effectiveness of the quality and the resolution that the UAS provide in spatial data acquisition are fulfilling scientific standards. Thus, UAS have a prominent role in post-earthquake damage assessment as they are capable of collecting high in resolution data for mapping spatiotemporal phenomena. The implementation of very detailed 3D Geovisualization requires oblique photos of the building faces. Thus, the UAS's data acquisition of nadir photos solely, is limited as it lacks crucial information for buildings facades. In this work, a UAS multi-camera rig installation is presented for the collection and simultaneous acquisition of nadir and in three different directions oblique photos. The acquired data were used for the creation of post-earthquake building facade 3D geovisualisation of Vrisa village in Lesvos island after the Mw6.3 earthquake on June 12. 2017 at two different spatial scales. The results showed that the use of a multi-camera rig attached to UAS can produce 3D visualizations capable of depicting in detail the diversity and the small size of cracks in roofs or facades of the post-earthquake buildings. Thus, the produced geovisualizations are a valuable tool for measurements of area and volume of house debris. Moreover, the results proved that the installation of a multi-camera rig in a UAS for data acquisition and the creation of accurate 3D visualizations using these data could be a valuable and useful tool for post-earthquake damage assessment.
机译:近年来,在需要快速而可靠的地理数据的各种科学方面,无人航空系统的作用越来越大。如今,UAS在空间数据采集中提供的质量有效性和分辨率正在满足科学标准。因此,UAS在地震后破坏评估中具有重要作用,因为它们能够收集高分辨率数据以绘制时空现象。要实现非常详细的3D地理可视化,需要倾斜建筑物表面的照片。因此,UAS仅获取最低点照片的数据是有局限性的,因为它缺乏建筑物立面的关键信息。在这项工作中,提出了UAS多摄像机钻机的安装,用于收集和同时获取天底和在三个不同方向的斜照片。 2017年6月12日发生Mw6.3地震后,在莱斯沃斯岛Vrisa村地震后建筑物立面的3D地理可视化中创建了所获取的数据,用于两个不同的空间尺度。结果表明,使用连接到UAS的多摄像头钻机可以产生3D可视化图像,能够详细描绘地震后建筑物的屋顶或外墙中裂缝的多样性和小尺寸。因此,产生的地理可视化是用于测量房屋碎片的面积和体积的有价值的工具。此外,结果证明,在UAS中安装多相机钻机以进行数据采集以及使用这些数据创建精确的3D可视化效果可能是震后评估的有价值和有用的工具。

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