基于GIS的基础设施监测SAR干涉测量数据开发

IF 2.7 Q2 CONSTRUCTION & BUILDING TECHNOLOGY
F. Orellana, P. J. .. D'Aranno, Silvia Scifoni, M. Marsella
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引用次数: 0

摘要

监测城市地区和基础设施网络的结构稳定正在成为人口安全的主要社会经济问题之一。由于材料退化和负载能力损失导致风险增加,基础设施的老化加剧了这一问题。在这种情况下,SAR卫星数据对于识别和评估民用基础设施的恶化状况至关重要。SAR卫星传感器提供的大量数据促使开发和开发新的基于GIS的快速反应和决策程序。近几十年来,DInSAR技术已被有效地用于结构监测,为位于结构上的测量点提供毫米精度。我们的研究分析了定居点中结构物的行为,试图讨论土壤和结构物的相互作用,并考察了不同类型结构物(如道路和建筑物)的行为。所使用的方法基于长期SAR干涉测量数据和半自动程序,通过在“Implemented MOmonitoring displacement”I.MODI平台中执行的基于GIS的应用程序来测量结构的位移(mm/年)。该分析使用ERS、Envisat和COSMO SkyMed的卫星SAR多传感器,提供了长达25年的长期空间和时间连续性的广泛信息。该解释使用时间序列空间分析,并辅以正射影像、DBTR(区域地形数据库)、数字地表模型(DSM)和水文地质图的图层,以显示具有高位移率的异常区域,并观察沉积物中沉降的相关性。利用卫星信息和地理信息系统(GIS),我们能够观测到相关参数,如斜坡方向的前进速度(变形剖面)、累积位移和结构的趋势变化。结果说明了一种创新的程序,该程序允许DInSAR数据的管理,以促进结构的有效管理,其中在不同的空间尺度上制定了监测协议,将信息集成到GIS中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SAR Interferometry Data Exploitation for Infrastructure Monitoring Using GIS Application
Monitoring structural stability in urban areas and infrastructure networks is emerging as one of the dominant socio-economic issues for population security. The problem is accentuated by the age of the infrastructure because of increasing risks due to material deterioration and loss of load capacity. In this case, SAR satellite data are crucial to identify and assess the deteriorating conditions of civil infrastructures. The large amount of data available from SAR satellite sensors leads to the exploitation and development of new GIS-based procedures for rapid responses and decision making. In recent decades, the DInSAR technique has been used efficiently for the monitoring of structures, providing measurement points located on structures with millimeter precision. Our study has analyzed the behavior of structures in settlements, attempting to discuss the interactions of soil and structures, and examining the behavior of different types of structures, such as roads and buildings. The method used is based on long-term SAR interferometry data and a semi-automatic procedure to measure the displacement (mm/year) of structures, through a GIS-based application performed in the “Implemented MOnitoring DIsplacement” I.MODI platform. The analysis provides extensive information on long-term spatial and temporal continuity of up to 25 years of record, using satellite SAR multi-sensors from ERS, Envisat, and COSMO-SkyMed. The interpretation uses time series spatial analysis, supported by orthophotos, and layers of the DBTR (regional topographic database), Digital Surface model (DSM), and hydrogeological map to show anomalous areas with a high displacement rate and to observe the correlation of settlements in the sediments. With the satellite information and Geographic Information System (GIS), we were able to observe relevant parameters, such as the velocity of advance in the direction of the slope (deformation profiles), the cumulative displacement, and the trend changes in structures. The results illustrate an innovative procedure that allows the management of DInSAR data to facilitate the effective management of structures in which a monitoring protocol was developed at different spatial scales, integrating the information into a GIS.
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来源期刊
Infrastructures
Infrastructures Engineering-Building and Construction
CiteScore
5.20
自引率
7.70%
发文量
145
审稿时长
11 weeks
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