首页> 外文会议>IEEE International Geoscience and Remote Sensing Symposium >MITIGATION OF ATMOSPHERIC PHASE DELAY IN INSAR TIME SERIES USING ERA-INTERIM MODEL, GPS AND MODIS DATA: APPLICATION TO THE PERMAFROST DEFORMATION IN HURD PENINSULA, ANTARCTICA
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MITIGATION OF ATMOSPHERIC PHASE DELAY IN INSAR TIME SERIES USING ERA-INTERIM MODEL, GPS AND MODIS DATA: APPLICATION TO THE PERMAFROST DEFORMATION IN HURD PENINSULA, ANTARCTICA

机译:使用Era-Instim模型,GPS和MODIS数据来减轻Insar时间序列中的大气相延迟:应用于Hyd Meninsula,南极洲Hurd Meninsula的Permafrost变形

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In this study we compare the results obtained using three different atmospheric datasets for the mitigation of atmospheric effects in TerraSAR-X imagery. The used datasets are: ERA-interim re-analysis model, MODIS sensor precipitation water vapour data and GPS derived precipitable water vapour (PWV). The PWV maps were converted to atmospheric path delay and projected into the SAR interferograms geometry. Subsequently the PWV contribution was removed from the interferograms. The Persistent Scatterers technique was applied to the atmospherically corrected interferograms and the obtained displacement rate compared with GPS surface displacement. It was observed that the mitigation of atmospheric effects influences the estimated displacement rate.
机译:在这项研究中,我们比较使用三种不同的大气数据集获得的结果,以减轻Terrasar-X图像中的大气效应。使用的数据集是:ERA-INSTIM再分析模型,MODIS传感器沉淀水蒸气数据和GPS衍生的可沉淀水蒸气(PWV)。将PWV地图转换为大气路径延迟并投影到SAR干涉图几何中。随后从干涉图中移除了PWV贡献。与GPS表面位移相比,持续散射器技术应用于大气校正的干扰图和所获得的位移率。观察到,大气效应的缓解会影响估计的位移率。

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