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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Validation of alpine glacier velocity measurements using ERS Tandem-Mission SAR data
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Validation of alpine glacier velocity measurements using ERS Tandem-Mission SAR data

机译:使用ERS串联任务SAR数据验证高山冰川速度测量

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摘要

Five ascending and four descending ERS-1/2 tandem-mode synthetic aperture radar (SAR) interferometry (InSAR) data pairs with useful scene coherence are used to measure the surface flow field of an alpine glacier in the Canadian Rocky Mountains. The topographic component of the interferogram phase is calculated by using a digital elevation model (DEM) of the terrain and precise orbit data to reconstruct the ERS InSAR imaging geometry. The DEM is derived from the Canada Centre for Remote Sensing (CCRS) Convair-580 airborne SAR interferometer. As dual line-of-sight (LOS) measurements are not sufficient to completely resolve the three-dimensional (3D) surface flow field, several different assumptions for determining the missing variables are considered, and the 3D surface flow field is estimated by using single and dual LOS measurements. The InSAR results agree with historic and coincident displacement measurements made using traditional point surveying techniques.
机译:具有有用的场景相干性的五个上升和四个下降ERS-1 / 2串联模式合成孔径雷达(SAR)干涉测量(InSAR)数据对用于测量加拿大落基山脉的高山冰川的表面流场。干涉图相位的地形成分是通过使用地形的数字高程模型(DEM)和精确的轨道数据来重建ERS InSAR成像几何来计算的。 DEM来自加拿大遥感中心(CCRS)Convair-580机载SAR干涉仪。由于双视线(LOS)测量不足以完全解决三维(3D)表面流场,因此考虑了用于确定缺失变量的几种不同假设,并且通过使用单视场估计了3D表面流场和双重LOS测量。 InSAR结果与使用传统点测绘技术进行的历史和重合位移测量结果一致。

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