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A Multitemporal Method for Correction of Tropospheric Effects in Differential SAR Interferometry: Application to the Gulf of Corinth Earthquake

机译:校正SAR差分对流层效应的多时相方法:在科林斯湾地震中的应用

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摘要

Tropospheric inhomogeneities can form a major error source in differential synthetic aperture radar interferometry measurements, which are used in slow-deformation monitoring. Indeed, variations of atmospheric conditions between two radar acquisitions produce variations in the signal path of two images and, thus, additional fringes on differential interferograms. These effects have a strong influence on interferograms and must be compensated to obtain reliable deformation measurements. This paper presents a methodological approach to reduce at both global and local scales tropospheric contributions directly from differential interferograms. It first requires refined knowledge of the stable scatterers that can only be obtained from the analysis of a large population of multitemporal interferograms. The correction of global-scale atmospheric contribution exploits the correlation between phase and topography. The correction of local artifacts is based on the correlation between interferograms containing one common acquisition. This technique is validated on a database of 81 differential interferograms covering the Gulf of Corinth (Greece) and used to improve the measurements of ground deformation compared to global positioning system measurements
机译:在差分合成孔径雷达干涉测量中,对流层的不均匀性可能会成为主要的误差源,这些测量用于缓慢变形监测中。确实,两次雷达采集之间的大气条件变化会导致两个图像的信号路径发生变化,从而在差分干涉图中产生附加条纹。这些影响对干涉图有很大影响,必须加以补偿才能获得可靠的变形测量​​结果。本文提出了一种方法方法,可直接从差分干涉图上减少全球和局部尺度的对流层影响。首先,它需要对稳定散射体的精通知识,这些知识只能通过分析大量的多时间干涉图来获得。全球尺度大气贡献的校正利用了相位和地形之间的相关性。局部伪影的校正基于包含一个常见采集的干涉图之间的相关性。该技术在涵盖科林斯湾(希腊)的81个差分干涉图的数据库中得到了验证,并且与全球定位系统测量相比,用于改进地面变形的测量

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