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首页> 外文期刊>Geomatics,Natural Hazards & Risk >Fast terrain modelling for hydrogeological risk mapping and emergency management: the contribution of high-resolution satellite SAR imagery
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Fast terrain modelling for hydrogeological risk mapping and emergency management: the contribution of high-resolution satellite SAR imagery

机译:用于水文地质风险制图和应急管理的快速地形建模:高分辨率卫星SAR影像的贡献

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Geomatic tools fast terrain modelling play a relevant role in hydrogeological risk mapping and emergency management. Given their complete independence from logistic constraints on the ground (as for airborne data collection), illumination (daylight), and weather (clouds) conditions, synthetic aperture radar (SAR) satellite systems may provide important contributions in terms of digital surface models (DSMs) and digital elevation models (DEMs). For this work we focused on the potential of high-resolution SAR satellite imagery for DSM generation using an interferometric (InSAR) technique and using a revitalized radargrammetric stereomapping approach. The goal of this work was just methodological. Our goal was to illustrate both the fundamental advantages and drawbacks of the radargrammetric approach with respect to the InSAR technique for DSM generation, and to outline their possible joint role in hydrogeological risk mapping and emergency management. Here, it is worth mentioning that radargrammetry procedures are independent of image coherence (unlike the interferometric approach) and phase unwrapping, as well as of parsimony (only a few images are necessary). Therefore, a short time is required for image collection (from tens of minutes to a few hours), thanks to the independence from illumination and weather. The most relevant obstacles of the technique are speckle and the lack of texture impact on image matching, as well as the well-known deformations of SAR imagery (layover and foreshortening), which may produce remarkable difficulties with complex morphologies and that must be accounted for during acquisition planning. Here, we discuss results obtained with InSAR and radargrammetry applied to a COSMO-SkyMed SpotLight triplet (two stereopairs suited for radargrammetry and InSAR, sharing one common image) acquired over suburbs of San Francisco (United States), which are characterized by mixed morphology and land cover. We mainly focused on urban areas and zones covered by bare soil and rocks. Image processing was performed using the well-known commercial software SARscape???? for InSAR, and the radargrammetric suite implemented in SISAR, software developed at the Geodesy and Geomatic Division of the University of Rome ?¢????La Sapienza?¢????. Global accuracies were approximately 5 m using both approaches. However, several differences in terrain morphology reconstruction were determined and are underlined and evaluated here, as well as a possible way to further enhance the results using the integration of InSAR and radargrammetry.
机译:地理工具快速地形建模在水文地质风险制图和应急管理中发挥着重要作用。鉴于合成孔径雷达(SAR)卫星系统完全不受地面后勤约束(如机载数据收集),照明(日光)和天气(云)条件的影响,因此在数字表面模型(DSM)方面可能会做出重要贡献)和数字高程模型(DEM)。对于这项工作,我们重点研究了使用干涉(InSAR)技术和振兴的雷达图立体映​​射方法,高分辨率SAR卫星影像在DSM生成中的潜力。这项工作的目的仅仅是方法论上的。我们的目标是说明与用于DSM生成的InSAR技术相比,雷达测量方法的基本优点和缺点,并概述其在水文地质风险制图和应急管理中可能的共同作用。在这里,值得一提的是,雷达测量程序与图像相干性(与干涉法不同),相位解缠以及简约性(仅需要几个图像)无关。因此,由于不受光照和天气的影响,图像采集需要很短的时间(从几十分钟到几小时)。该技术最相关的障碍是斑点和对图像匹配的纹理影响不足,以及SAR图像的众所周知的变形(覆盖和缩短),这可能会在复杂的形态上产生显着的困难,必须解决在采购计划中。在这里,我们讨论了在美国旧金山郊区获得的,以COSMO-SkyMed SpotLight三重态(适用于雷达测量和InSAR的两个立体对,共享一个共同的图像)的InSAR和雷达测量技术获得的结果,这些特征以混合形态学和土地覆盖。我们主要关注裸露的土壤和岩石覆盖的市区和区域。使用著名的商业软件SARscape进行图像处理。罗马大学的大地测量学和地理学部门开发了软件,用于InSAR,并在SISAR中实现了雷达测量套件。使用这两种方法,全球精度约为5 m。但是,在地形形态重建中确定了一些差异,并在此处强调和评估,以及使用InSAR和雷达测量技术的集成来进一步增强结果的可能方法。

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