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Advanced SBAS-DInSAR Technique for Controlling Large Civil Infrastructures: An Application to the Genzano di Lucania Dam

机译:控制大型民用基础设施的高级SBAS-DInSAR技术:在Genzano di Lucania大坝中的应用

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摘要

Monitoring surface deformation on dams is commonly carried out by in situ geodetic surveying, which is time consuming and characterized by some limitations in space coverage and frequency. More recently microwave satellite-based technologies, such as advanced-DInSAR (Differential Synthetic Aperture Radar Interferometry), have allowed the integration and improvement of the observation capabilities of ground-based methods thanks to their effectiveness in collecting displacement measurements on many non-destructive control points, corresponding to radar reflecting targets. The availability of such a large number of points of measurement, which are distributed along the whole structure and are characterized by millimetric accuracy on displacement rates, can be profitably adopted for the calibration of numerical models. These models are implemented to simulate the structural behaviour of a dam under conditions of stress thus improving the ability to maintain safety standards. In this work, after having analysed how advanced DInSAR can effectively enhance the results from traditional monitoring systems that provide comparable accuracy measurements on a limited number of points, an FEM model of the Genzano di Lucania earth dam is developed and calibrated. This work is concentrated on the advanced DInSAR technique referred to as Small BAseline Subset (SBAS) approach, benefiting from its capability to generate deformation time series at full spatial resolution and from multi-sensor SAR data, to measure the vertical consolidation displacement of the Genzano di Lucania earth dam.
机译:监测大坝表面变形通常是通过大地测量来进行的,这很费时,而且在空间覆盖率和频率上都有一定的局限性。最近,基于微波卫星的技术,例如先进的DInSAR(差分合成孔径雷达干涉测量法),由于其在许多非破坏性控制中收集位移测量值的有效性,已经允许集成和改进地面方法的观测能力。点,对应于雷达反射目标。这样大量的测量点的可用性沿着整个结构分布,并具有位移速率的毫米精度,可用于数值模型的校准。这些模型的实现是为了模拟大坝在应力条件下的结构行为,从而提高了维持安全标准的能力。在这项工作中,在分析了先进的DInSAR如何有效地增强传统监测系统的结果后,该系统可在有限的点上提供可比较的精度测量,然后开发并校准了Genzano di Lucania土坝的FEM模型。这项工作集中在称为小BAseline子集(SBAS)方法的先进DInSAR技术上,得益于其以全空间分辨率生成变形时间序列的能力以及多传感器SAR数据来测量Genzano的垂直固结位移的能力迪卢卡尼亚土坝。

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