首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >SENSOR FUSION FOR 3D ARCHAEOLOGICAL DOCUMENTATION AND RECONSTRUCTION: CASE STUDY OF “CUEVA PINTADA” IN GALDAR, GRAN CANARIA
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SENSOR FUSION FOR 3D ARCHAEOLOGICAL DOCUMENTATION AND RECONSTRUCTION: CASE STUDY OF “CUEVA PINTADA” IN GALDAR, GRAN CANARIA

机译:传感器融合3D考古文献与重构:凯尔尔德嘉达拉岛“Cueva Pintada”案例研究

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3D documentation and reconstruction are decisive when inspecting archaeological sites without any direct contact or when monitoring the changes they have suffered over time are required. In addition, there is a great commitment with the preservation of heritage as well as with the awareness and dissemination of these historical sites. In this sense, this paper presents a visualization system with metric properties that will serve to manage and disseminate the archaeological site under study. Specifically, two techniques were used in an integrated way for the data acquisition: laser scanning and close-range photogrammetry. Both techniques come together in perfect marriage as remote data acquisition techniques to generate high quality 3D spatial products of this type of scenarios. A combined acquisition methodology is proposed in which the design of a network using reference spheres and targets is the key to link data from both technologies. This paper will describe the proposed methodology and the results obtained in the archaeological site of Cueva Pintada in Gran Canaria (Spain) which has an area of around 5400 m2. As final products: (i) a laser model of ± 1.68 mm accuracy and 5 mm resolution, (ii) a photorealistic photogrammetric model of ± 8.4 mm accuracy and 1.47 mm of spatial resolution thanks to a specific pole developed for this purpose and (iii) a virtual tour with metric properties of the whole archaeological site were obtained.
机译:3D文档和重建在检查考古地点而无需任何直接接触或监测它们随时间遭受的变化时是果断的。此外,还有很大的承诺与保护遗产以及对这些历史遗迹的意识和传播。从这个意义上讲,本文提出了一种可视化系统,具有可用于管理和传播在研究中的考古遗址的公制属性。具体地,以综合方式使用两种技术进行数据采集:激光扫描和近距离摄影测量。这两种技术都以完美的婚姻融为一体,作为远程​​数据采集技术,以产生这种情况的高质量3D空间产品。提出了一种组合的采集方法,其中使用参考领域和目标的网络设计是链接来自两种技术的数据的关键。本文将描述拟议的方法论和在大加那利岛(西班牙)的Cueva Pintada考古遗址中获得的结果,其面积约为5400平方米。作为最终产品:(i)激光模型精度为±1.68毫米,分辨率为5毫米,(ii)光电型摄影测量型±8.4毫米的精度和1.47毫米的空间分辨率,这归功于为此目的开发的特定杆和(III )获得具有整个考古遗址的度量特性的虚拟之旅。

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