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A New Method for Identification and Analysis of Persistent Scatterers in Series of SAR Images

机译:一种新方法,用于识别和分析持久性散射体系列SAR图像

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Synthetic aperture radar (SAR) interferometry is a powerful technology for measuring slow terrain movements. The extraction of this information is a complex task, because the phase of the signal is measured only modulo 2?? and is affected by noise and systematic terms. The persistent scatterer (PS) approach brought important advances in the solution of this problem. In this work, we present a new method, named persistent scatterer pairs (PSP) method, for the identification and the analysis of PS in series of full resolution SAR images. The problems coming from orbital and atmosphere phase artifacts are effectively overcome by exploiting their spatial correlation, without using model based interpolations or fits, which can be advantageous when the atmospheric artifacts or the displacement to be retrieved are not very well described by the models used in the standard PS approach. Moreover, the proposed method does not need a preprocessing to calibrate the data and is insensitive to the density of PS candidates, it is able to identify PS in natural terrains and PS characterized by non linear movements, is computationally efficient and highly parallelizable. The results obtained on real ERS SAR data confirm the validity of the proposed approach.
机译:合成孔径雷达(SAR)干涉测量是一种用于测量慢地形运动的强大技术。此信息的提取是一个复杂的任务,因为信号的阶段仅测量Modulo 2 ??并受到噪声和系统的影响。持久散射者(PS)方法在解决这个问题的解决方案中提出了重要进展。在这项工作中,我们提出了一种新的方法,名为持久散射器对(PSP)方法,用于识别和分析PS系列全分辨率SAR图像。通过利用它们的空间相关性,在不使用基于模型的插值或适合的情况下,有效地克服来自轨道和大气相伪像的问题,这可能是有利的,当要检索的大气伪影或被置换的型号通过使用的模型来说不是很好的标准PS方法。此外,所提出的方法不需要预处理以校准数据并对PS候选的密度不敏感,它能够识别在天然地形中的PS,并且具有非线性运动的PS,是计算的高效且非常平行化。在真实ers SAR数据中获得的结果证实了所提出的方法的有效性。

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