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首页> 外文期刊>Journal of geodynamics >Digital elevation model with the ground-based SAR IBIS-L as basis for volcanic deformation monitoring
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Digital elevation model with the ground-based SAR IBIS-L as basis for volcanic deformation monitoring

机译:基于地面SAR IBIS-L的数字高程模型作为火山形变监测的基础

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摘要

Within the project Exupery, a hybrid deformation observation system is developed, which is part of a Volcano Fast Response System (VFRS). The VFRS shall be a mobile, robust, real-time, easy to use early warning system, which, in case of a volcanic crisis, will support the locale authorities in their decisions about hazard mitigation provisions, especially about the evacuation of people.rnThe hybrid deformation observation system combines a ground-based Synthetic Aperture Radar named IBIS-L with a network of GPS receivers and will allow the continuous, weather independent determination of areal 3D displacements.rnIn this paper we present the results of first tests with IBIS-L in an active quarry near Dieburg, Germany. A Digital Elevation Model (DEM) was determined with IBIS-L and compared with a DEM derived by terrestrial laser scanning and photogrammetry. The ability to determine accurate DEMs with IBIS-L is the basis for the combination of different observation techniques, as without a DEM the displacements observed with IBIS-L cannot be georeferenced.rnThe standard deviation of the differences between the DEM by IBIS-L and the DEM by laser scanning and photogrammetry depends on the surface characteristics. We found a standard deviation of 0.8 m at a slope of rocks and debris, 2.0 m at mining terraces with low vegetation and 3.0 m in a vegetation covered area.
机译:在Exupery项目中,开发了混合变形观测系统,该系统是Volcano快速响应系统(VFRS)的一部分。 VFRS应该是一个可移动的,健壮的,实时的,易于使用的预警系统,如果发生火山危机,它将支持地方当局做出有关减轻危害的规定,特别是有关人员疏散的决定。混合形变观测系统将名为IBIS-L的地面合成孔径雷达与GPS接收器网络相结合,将能够连续,不受天气影响地确定3D区域位移。rn本文介绍了IBIS-L的首次测试结果在德国迪堡附近的一座采石场。使用IBIS-L确定了数字高程模型(DEM),并将其与通过地面激光扫描和摄影测量法得出的DEM进行了比较。借助IBIS-L确定准确的DEM的能力是组合各种观测技术的基础,因为如果没有DEM,则无法对IBIS-L观测到的位移进行地理参考。rn IBIS-L与DEM之间差异的标准偏差激光扫描和摄影测量的DEM取决于表面特性。我们发现岩石和碎屑的坡度的标准偏差为0.8 m,低植被的开采阶地的标准偏差为2.0 m,植被覆盖区的标准偏差为3.0 m。

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