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Modeling of atmospheric effects on InSAR measurements by incorporating terrain elevation information

机译:通过合并地形高程信息对InSAR测量中的大气影响建模

摘要

We propose an elevation-dependent calibratory method to correct for the water vapour-induced delays over Mt. Etna that affect the interferometric syntheric aperture radar (InSAR) results. Water vapour delay fields are modelled from individual zenith delay estimates on a network of continuous GPS receivers. These are interpolated using simple kriging with varying local means over two domains, above and below 2 km in altitude. Test results with data from a meteorological station and 14 continuous GPS stations over Mt. Etna show that a reduction of the mean phase delay field of about 27% is achieved after the model is applied to a 35-day interferogram.
机译:我们提出了一种依赖于海拔的校准方法,以校正水蒸气引起的Mt延迟。 Etna影响干涉式合成孔径雷达(InSAR)的结果。水蒸气延迟场是根据连续GPS接收器网络上各个天顶延迟估计值建模的。使用简单的克里金插值法,在海拔2 km以上和以下的两个域上使用具有不同局部平均值的局部克里金插值法。测试结果来自气象站和山上14个连续GPS站的数据。 Etna表明,将模型应用于35天干涉图后,平均相位延迟场降低了约27%。

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