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PS-InSAR experiments for the analysis of urban ground deformationusing StaMPS

机译:PS-Insar实验,用于分析城市地面畸形邮票

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Many works and European projects have proven the ability of Permanent Scatterers Synthetic Aperture Radar Interferometry (PS-InSAR) to measure the slow deformation of the persistent ground objects with a millimetric precision measurement. Compared to the classical differential SAR Interferometry (DInSAR), PS-InSAR is an approach that estimates several contributions: atmospheric disturbances, orbital errors, deformation signal as well as topographical errors. In this paper, we propose to apply PS-InSAR for the analysis of the ground deformation phenomena in a urban context. For that purpose, the Stanford Method for Permanent Scatterers (StaMPS) is applied using an ERS data archive. StaMPS was developed in Stanford University by Andy Hooper. The advantages to use StaMPS were that it is free and many scripts are already available to process the dataset. In first steps of the processing, differential interferograms are produced using the Delft Object-oriented Radar Interferometric Software (DORIS), developed in Delft University of Technology . Doris is also a free tool. StaMPS method is briefly explained. A first experiment on the city of Paris, France, is presented, especially because PS--INSAR and DInSAR results have already been published by several researchers. Therefore, the processing of Nantes (French city) is carried out. Some important results are shown.
机译:许多作品和欧洲项目已经证明了永久散射器合成孔径雷达干涉测量(PS-INSAR)的能力,以测量持久性接地物体的慢变形,具有毫米精度测量。与经典差分SAR干涉测量(DINSAR)相比,PS-Insar是一种估计若干贡献的方法:大气干扰,轨道误差,变形信号以及地形误差。在本文中,我们建议将PS-Insar应用于城市背景下的地面变形现象的分析。为此目的,使用ERS数据存档应用永久散射仪(印章)的斯坦福方法。 Andy Hooper在斯坦福大学开发了邮票。使用邮票的优点是它是免费的,许多脚本已经可用于处理数据集。在处理的第一步,使用Delft面向对象的雷达干涉软件(Doris)产生差分干涉图,该软件在代尔福特理工大学开发。 Doris也是一个免费的工具。简要解释邮票方法。在法国巴黎市的第一次试验,特别是因为PS - Insar和Dinsar结果已经被几个研究人员发表。因此,进行了南特(法国城市)的处理。显示了一些重要结果。

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