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UAV photogrammetry for archaeological site survey. 3D models at the Hierapolis in Phrygia (Turkey)

机译:无人机摄影测量法,用于考古现场调查。 Phrygia(土耳其)的希拉波利斯的3D模型

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摘要

Unmanned aerial vehicle (UAV) photogrammetry has shown a very rapid development in many fields, especially in archaeological excavation areas and architectural complexes, where it offers a detailed generation of three-dimensional (3D) data including the possibility of updating over time. It also proves to be a very flexible tool applicable to many types of complex areas with a variety of different features. The use of aerial acquisition provides highly effective results, adding to both rapid capture and lower costs. In fact, today in the field of archaeological research, great efforts are invested in the generation of very large-scale models and orthophotos, and the technology seems to promise further future developments, not only from the terrestrial (orthogonal) point of view, but also from the nadiral direction from a low altitude, as a preferential and often optimal point of view. Here an effective workflow for photogrammetric product generation is presented for selected case studies in some monumental areas of ancient Hierapolis in Phrygia (Turkey), in which the Italian Archaeological Mission of Hierapolis (MAIER) has been working since the 1960s. The recent experiences achieved by UAV photogrammetry are quite innovative. The variety and complexity of the buildings, as well as the height of their ruins, offer numerous challenges, which are interesting to deal with. The 3D aerial survey was performed for multiple purposes with the eBee system by Sensefly. Specific attention was paid to the digital surface model (DSM) and aerial orthoimages of three test areas: the Plutonium area; the Thermal Bath-Church; and the Necropolis. Starting from the same technical approach, a comparative assesment among the three sites was carried out, taking into account the specific goals, the type of the structure and the terrain conformation.
机译:无人机(UAV)摄影测量法在许多领域都显示出非常快速的发展,尤其是在考古发掘地区和建筑群中,它提供了详细的三维(3D)数据生成功能,其中包括随时间更新的可能性。它也被证明是一种非常灵活的工具,适用于具有各种不同功能的多种类型的复杂区域。空中采集的使用提供了非常有效的结果,既增加了快速捕获又降低了成本。实际上,在考古学研究的今天,已经投入了巨大的精力来生成超大型模型和正射影像,这项技术似乎有望从地面(正交)的角度进一步发展。也从低海拔的天底方向出发,这是一种优先且通常是最佳的观点。这里提供了有效的摄影测量产品生成工作流,用于在弗里贾(土耳其)古代希拉波利斯的一些古迹中的特定案例研究,自1960年代以来,意大利希拉波利斯考古团(MAIER)就在其中开展工作。无人机摄影测量学获得的最新经验是相当创新的。建筑物的多样性和复杂性以及废墟的高度,带来了许多挑战,这是很有趣的。 Sensefly使用eBee系统为多种目的执行了3D航测。特别注意了以下三个测试区域的数字表面模型(DSM)和航空正射影像:area区域;热浴教堂;和大墓地。从相同的技术方法开始,在三个站点之间进行了比较评估,同时考虑了具体目标,结构类型和地形构造。

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