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Integrating radar and laser-based remote sensing techniques for monitoring structural deformation of archaeological monuments

机译:集成雷达和基于激光的遥感技术以监测考古遗迹的结构变形

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摘要

Ground-Based Synthetic Aperture Radar Interferometry (GBInSAR) and Terrestrial Laser Scanning (TLS) were purposely integrated to obtain 3D interferometric radar point clouds to facilitate the spatial interpretation of displacements affecting archaeological monuments. The paper describes the procedure to implement this integrated approach in the real-world situations of surveillance of archaeological and built heritage. Targeted tests were carried out on the case study of the Domus Tiberiana sited along the northern side of the Palatino Hill in the central archaeological area of Rome, Italy, and displacements of the monument were monitored over almost one year of acquisition. The GBInSAR - TLS integration provided updated information about the condition of the archaeological structures in relation to their history of instability mechanisms, and did not highlighted a general worsening for the stability of the entire monument. Point-wise and prompt detection of displacement anomalies and/or sudden changes in displacement trends proved the suitability of the method to support early warning procedures, also to evaluate effects on the masonry due to human activities.
机译:地基合成孔径雷达干涉测量法(GBInSAR)和地面激光扫描(TLS)专门集成在一起,以获得3D干涉雷达点云,以方便对影响考古古迹的位移进行空间解释。本文介绍了在现实世界中监测考古和建筑遗产的情况下实施这种集成方法的过程。针对位于意大利罗马中央考古区Palatino山北侧的Domus Tiberiana的案例研究进行了有针对性的测试,并在收购后将近一年的时间内对纪念碑的位移进行了监测。 GBInSAR-TLS集成提供了有关考古结构状况与不稳定机制历史相关的更新信息,并且没有强调整个纪念碑稳定性的普遍恶化。逐点并迅速发现位移异常和/或位移趋势突然变化证明了该方法适用于支持预警程序,还可以评估人为活动对砌体的影响。

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