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Monitoring unstable slopes using Persistent Scatterers Interferometry: opportunities and challenges

机译:使用持久散射器干涉测量监测不稳定的斜坡:机会和挑战

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Advanced space-borne Persistant Scatterers Interferometry (PSI) can provide wide-area coverage (thousands km~2) and precise (mm-cm resolution), spatially dense information (from hundreds to over thousand measurement points/km~2) on ground surface deformations. Furthermore, new application opportunities are emerging thanks to i) the greater data availability offered by recent launches of radar satellites, ii) the improved capabilities of the new space radar sensors (Cosmo-SkyMed, TerraSAR-X) in terms of resolution (from 3 to 1 m) and revisit time (from 11 to 4 days). Although, the applicability of radar interferometry to regional and local-scale investigations of slope instability have been demonstrated in several studies, more progress is needed in the integration of PSI results with ground data and in their validation in order to foster a more profitable use of this technique. It is also expected that numerical modeling slope deformations detected by radar satellites should help to constrain the data interpretation.
机译:先进的空间持久散射器干涉测量(PSI)可以提供广域覆盖范围(数千km〜2)和精确(mm-cm分辨率),在地面上的空间密集信息(从数百到千千万个测量点/ km〜2)变形。此外,由于i)雷达卫星最近推出的更大的数据可用性,ii)新的空间雷达传感器(Cosmo-Skymed,Terrasar-X)在分辨率方面提高了更大的数据可用性(从3到1米)和重新访问时间(11至4天)。虽然,在几项研究中,已经证明了雷达干涉测量与区域和局部规模调查的适用性,但在几项研究中已经证明了PSI结果与地面数据和验证中的验证融合了更多的进展,以便培养更有利可图的使用这种技术。还期望雷达卫星检测的数值建模斜率变形应该有助于约束数据解释。

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