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Changes of dominant scatterers and propagation paths as a possible origin of singular points in radar interferometry: Experimental analysis

机译:占主导地位的散射体和传播路径的变化可能是雷达干涉测量中奇异点的起源:实验分析

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In Synthetic Aperture Radar (SAR) interferometry(InSAR), we generally expect that there is only one unique dominant scatterer in a pixel. To make a SAR interferogram, we have to observe every place twice. Between the observations, the dominant scatterer is expected to unchange. However, in actual situations, there are multiple scatterers in one pixel, and a dominant one may change observation by observation. Our main idea in this paper is that this change happens more frequently than we have expected, and that this phenomenon can generate singular points (SPs) in the SAR interferogram which prevent us from accurate phase unwrapping. Here, we present the results of the preliminary experiments using real aperture radar system, which suggest one of the mechanisms of the singular point generation.
机译:在合成孔径雷达(SAR)干涉测量法(InSAR)中,我们通常期望像素中只有一个唯一的主要散射体。要制作SAR干涉图,我们必须观察每个位置两次。在观察之间,预计主要散射体将保持不变。但是,在实际情况下,一个像素中有多个散射体,并且占主导的散射体可能会因观察而改变。本文的主要思想是,这种变化比我们预期的发生得更频繁,并且这种现象会在SAR干涉图中产生奇异点(SP),从而使我们无法准确地展开相位。在这里,我们介绍了使用真实孔径雷达系统进行的初步实验的结果,这表明了奇异点生成的机制之一。

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