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Coupling of GPS/GNSS and radar interferometric data for a 3D surface displacement monitoring of landslides

机译:GPS / GNSS与雷达干涉数据的耦合,用于滑坡的3D表面位移监测

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摘要

Persistent scatterer interferometry (PSI) is capable of millimetric measurements of ground deformation phenomena occurring at radar signal reflectors (persistent scatterers, PS) that are phase coherent over a period of time. However, there are also limitations to PSI; significant phase decorrelation can occur between subsequent interferometric radar (InSAR) acquisitions in vegetated and low-density PS areas. Here, artificial amplitude-and phase-stable radar scatterers may have to be introduced. I2GPS was a Galileo project (02/2010-09/2011) that aimed to develop a novel device consisting of a compact active transponder (CAT) with an integrated global positioning system (GPS) antenna to ensure millimetric co-registration and a coherent cross-reference. The advantages are: (1) all advantages of CATs such as small size, light weight, unobtrusiveness and usability with multiple satellites and tracks; (2) absolute calibration for PSI data; (3) high sampling rate of GPS enables detection of abrupt ground motion in 3D; and (4) vertical components of the local velocity field can be derived from single-track InSAR line-of-sight displacements. A field trial was set to test the approach at a potential landslide site in Potoska planina, Slovenia to evaluate the applicability for operational monitoring of natural hazards. Preliminary results from the trial highlight some of the key considerations for operational deployments in the field. Ground motion measurements also allowed an assessment of landslide hazard at the site and demonstrated the synergies between InSAR and GPS measurements for landslide applications. InSAR and GPS measurements were compared to assess the consistency between the methods from the slope mass movement detection aspect.
机译:持续散射干涉测量(PSI)能够对一段时间内相干的雷达信号反射器(持续散射器,PS)处发生的地面变形现象进行毫米测量。但是,PSI也有局限性。在植被和低密度PS区域中,随后的干涉雷达(InSAR)采集之间可能会发生明显的相位相关性。在这里,可能必须引入人工振幅和相位稳定雷达散射体。 I2GPS是伽利略计划(02 / 2010-09 / 2011)的目标,该项目旨在开发一种新型设备,该设备由紧凑型有源应答器(CAT)和集成的全球定位系统(GPS)天线组成,以确保毫米共配准和相干交叉-参考。优点是:(1)CAT的所有优点,例如体积小,重量轻,不引人注目以及可用于多个卫星和轨道; (2)对PSI数据进行绝对校准; (3)GPS的高采样率可以检测3D突然的地面运动; (4)局部速度场的垂直分量可以从单轨InSAR视线位移得出。在斯洛文尼亚Potoska planina的一个潜在滑坡场进行了现场试验,以评估这种方法,以评估对自然灾害进行操作监测的适用性。该试验的初步结果强调了实地业务部署的一些关键考虑因素。地面运动测量还可以评估现场的滑坡灾害,并证明了InSAR和GPS测量在滑坡应用中的协同作用。从斜坡质量运动检测方面比较了InSAR和GPS测量,以评估方法之间的一致性。

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