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Interpolation of GPS results incorporating geophysical and InSAR information

机译:结合地球物理和InSAR信息的GPS结果插值

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Continuous GPS networks, typically with a station spacing of about 30 km, are still not dense enough to accurately characteristise the dynamics of active faults. Interpolation of these GPS results can improve our understanding of active faults and hence promote related studies. Moreover, even when the networks are densified in order to recover the signature of active faults, the station configuration design may not be ideal. Interpolation at these points, based on the GPS results from a well-designed station network, can provide a good quality control measure. As a first step in the interpolation process an irregular grid pattern is formed, based on the locations of the GPS stations, by using the indexed sorting algorithm. In order to interpolate objectively, the GPS stations and the intended interpolating points are classified into different sub-regions according to their positions in relation to the faults, which are expressed by open- and closed-curve models. GPS results from stations in the same sub-region are used to derive a dynamic model for interpolation at grid points in the same sub-region. A deformation distribution model based on GPS and differential Synthetic Aperture Radar Interferometry (InSAR) results is used as constraints to scale the time series generated using the dynamic model.
机译:连续的GPS网络(通常站距约为30 km)仍然不够密集,无法准确地描述活动断层的动力学特征。对这些GPS结果进行插值可以提高我们对活动断层的理解,从而促进相关研究。而且,即使当网络被压缩以恢复活动故障的特征时,站配置设计也可能不是理想的。基于精心设计的站点网络的GPS结果,在这些点进行插值可以提供良好的质量控制措施。作为插值过程的第一步,通过使用索引排序算法,基于GPS站的位置形成不规则的网格图案。为了客观地进行插值,根据GPS站和预期的插值点相对于断层的位置,将它们划分为不同的子区域,这些位置由开放曲线模型和封闭曲线模型表示。来自相同子区域中的站的GPS结果用于导出用于在同一子区域中的网格点进行插值的动力学模型。基于GPS和差分合成孔径雷达干涉法(InSAR)结果的变形分布模型用作约束条件,以缩放使用动态模型生成的时间序列。

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