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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing. >Geostatistical Analysis and Mitigation of the Atmospheric Phase Screens in Ku-Band Terrestrial Radar Interferometric Observations of an Alpine Glacier
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Geostatistical Analysis and Mitigation of the Atmospheric Phase Screens in Ku-Band Terrestrial Radar Interferometric Observations of an Alpine Glacier

机译:高山冰川岩石雷达干涉观察中的古代阶段屏幕的地质统计分析与缓解

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摘要

Terrestrial radar interferometry (TRI) can measure displacements at high temporal resolution, potentially with high accuracy. An application of this method is the observation of the surface flow velocity of steep, fast-flowing aglaciers. For these observations, the main factor limiting the accuracy of TRI observations is the spatial and temporal variabilities in the distribution of atmospheric water vapor content, causing a phase delay [atmospheric phase screen (APS)] whose magnitude is similar to the displacement phase. This contribution presents a geostatistical analysis of the spatial and temporal behaviors of the APS in Ku-Band TRI. The analysis is based on the assumption of a separable spatiotemporal covariance structure, which is tested empirically using variogram analysis. From this analysis, spatial and temporal APS statistics are estimated and used in a two-step procedure combining regression-Kriging with generalized least squares (GLS) inversion to estimate a velocity time-series. The performance of this method is evaluated by cross-validation using phase observations on stable scatterers. This analysis shows a considerable reduction in residual phase variance compared with the standard approach of combining the linear models of APS stratification and interferogram stacking.
机译:地面雷达干涉测量(TRI)可以测量高时间分辨率的位移,可能具有高精度。该方法的应用是观察陡峭,快速流动的曲线的表面流速。对于这些观察来,限制TRI观察精度的主要因素是在大气水蒸气含量分布中的空间和时间变性,导致相位延迟[大气相筛网(APS)],其幅度与位移相似的幅度。此贡献提出了对KU频段TRI中APS的空间和时间行为的地质统计分析。该分析基于可分离的时空协方差结构的假设,其经验使用变形仪分析测试。从该分析,估计空间和时间APS统计,并用于两步过程,将回归克格格与广义最小二乘(GLS)反转相结合以估计速度时间序列。通过在稳定散射体上使用相位观察来评估该方法的性能。该分析表明,与组合APS分层和干涉图堆叠的线性模型的标准方法相比,残留阶段方差的相当大降低。

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