Multimedia Photogrammetry for Automated 3D Monitoring in Archaeological Waterlogged Wood Conservation

R. Rofallski, A. Colson, T. Luhmann
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Abstract

Abstract. This study addresses the challenges inherent in preserving archaeological waterlogged wood, which is prone to deformation and decay if not stabilized immediately after recovery. Conventional preservation methods, such as impregnation with polyethylene glycol (PEG) solutions, often result in undesirable dimensional changes. To obtain exact spatio-temporal information on the deformations during the conservation process, a photogrammetric monitoring system, utilizing a stereo camera facing from air into the liquid, attached to an automated biaxial measurement unit is proposed. Special target heads were developed and attached to the wood to provide deformation points. Refraction correction was applied to the imaging model by ray tracing, and indirect flat lighting was used to mitigate turbidity. The system observed logs from a wooden track from the first century, subject to conservation. Subject of investigation were the influence of refraction negligence and scale definition in a bundle geometry, similar to bathymetric aerial setups. Results show that refraction correction is imperative for good results. Furthermore, scale definition with highly accurately determined scale bars and inclusion of relative orientation constraints provide further accuracy improvements.
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多媒体摄影测量用于考古涝害木材保护中的自动三维监测
摘要本研究探讨了保存考古水渍木料所面临的固有挑战,因为水渍木料在复原后如果不立即加以稳定,很容易发生变形和腐烂。传统的保存方法,如用聚乙二醇(PEG)溶液浸渍,往往会导致不理想的尺寸变化。为了获得保存过程中变形的准确时空信息,我们提出了一种摄影测量监测系统,该系统利用立体摄像机从空气中向液体中拍摄,并连接到自动双轴测量装置上。开发了特殊的靶头,并将其固定在木材上,以提供变形点。通过光线追踪对成像模型进行折射校正,并使用间接平面照明来减轻浊度。该系统对一世纪的木制轨道上的原木进行了观测,该轨道受到保护。研究对象是折射疏忽和束状几何中比例尺定义的影响,类似于测深航空设置。结果表明,折射校正是获得良好结果的必要条件。此外,利用高度精确的比例尺定义比例尺,并纳入相对方向约束条件,可进一步提高精度。
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The 19th 3D GeoInfo Conference: Preface Archives Monitoring Time-Varying Changes of Historic Structures Through Photogrammetry-Driven Digital Twinning Multimedia Photogrammetry for Automated 3D Monitoring in Archaeological Waterlogged Wood Conservation Efficient Calculation of Multi-Scale Features for MMS Point Clouds Concepts for compensation of wave effects when measuring through water surfaces in photogrammetric applications
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