首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >THE GREAT WALL 3D DOCUMENTATION AND APPLICATION BASED ON MULTI-SOURCE DATA FUSION – A CASE STUDY OF NO.15 ENEMY TOWER OF THE NEW GUANGWU GREAT WALL
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THE GREAT WALL 3D DOCUMENTATION AND APPLICATION BASED ON MULTI-SOURCE DATA FUSION – A CASE STUDY OF NO.15 ENEMY TOWER OF THE NEW GUANGWU GREAT WALL

机译:基于多源数据融合的长城3D文档和应用 - 以新广东长城No.15敌塔的案例研究

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Laser scanning or photogrammetry are useful individual techniques for digital documentation of cultural heritage sites. However, these techniques are of limited usage if cultural heritage such as the Great Wall is in harsh geographical conditions. The Great Wall is usually built on the ridge with cliffs on both sides, so it is very difficult to construct scaffolding. Therefore, the three-dimensional (3D) data obtained from the traditional 3D laser scanning is not complete. As UAV cannot enter the enemy tower, the 3D structure data inside the enemy tower with unmanned aerial vehicle (UAV) photogrammetry is missing. In order to explore effective methods to completely collect the 3D data of cultural heritage under harsh geographical environment, this study focuses on establishing a 3D model and the associated digital documentation for the No.15 enemy tower of the New Guangwu Great Wall using a combination of terrestrial laser scanning and UAV photogrammetry. This paper proposes an integrated data collection method and reduces the layout of image control points using RTK-UAV technology, which improved work efficiency and reduced work risks as well. In this paper, the internal structure data of the Great Wall enemy tower was collected by laser scanning, the external structure data was collected by UAV photogrammetry, and data fusion was based on ICP algorithm. Finally, we obtained the complete and high quality 3D digital documentation of the Great Wall enemy tower, the data can be displayed digitally and help heritage experts complete the Great Wall's restoration. This study demonstrates the potential of integrating terrestrial laser scanning and UAV photogrammetry in 3D digital documentation of cultural heritage sites.
机译:激光扫描或摄影测量是文化遗产网站数字文档的有用技术。然而,如果长城等文化遗产处于恶劣的地理条件,这些技术的使用有限。长城通常是在两侧的悬崖上建造的山脊,因此构建脚手架是非常困难的。因此,从传统的3D激光扫描获得的三维(3D)数据不完整。由于UAV无法进入敌人塔,缺少了敌人的空中车辆(UAV)摄影测量的敌方塔楼内的3D结构数据。为了探讨在恶劣的地理环境下完全收集文化遗产的3D数据的有效方法,专注于建立3D模型和新广武墙上的3D模型和相关数字文档使用地面激光扫描和UAV摄影测量。本文提出了一种集成的数据收集方法,并使用RTK-UAV技术减少了图像控制点的布局,从而提高了工作效率和减少了工作风险。在本文中,通过激光扫描收集了大壁塔的内部结构数据,通过UAV摄影测量收集外部结构数据,数据融合基于ICP算法。最后,我们获得了伟大的墙塔的完整和高质量的3D数字文档,数据可以数字化,帮助遗产专家完成长城的恢复。本研究表明,在文化遗产地区的3D数字文档中整合陆地激光扫描和无人机摄影措施的潜力。

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