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Accuracy improvement by residue and amplitude based local co-registration method for ALOS-2/PALSAR-2 DInSAR

机译:通过基于残差和幅度的局部共配准方法提高ALOS-2 / PALSAR-2 DInSAR的精度

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In the field of Synthetic Aperture Radar (SAR) interferometry, we generally expect that there is only unique dominant scatterer in one pixel. To make a SAR interferogram, we have to observe a place twice. The dominant scatterer in every pixel must be identical in those observations. However, in an actual situation, there are multiple scatterers in one pixel physically, and the dominant one may be changed in the two observations. Slight difference of incident angle may cause the change of the dominant scatterer and the propagation path. The change can generate singular points (SPs) in the inter-ferogram which prevent us from accurate phase unwrapping. Here, we present experimental results in an anechoic chamber which show the mechanism of the singular point generation.
机译:在合成孔径雷达(SAR)干涉测量领域,我们通常希望一个像素中只有唯一的主散射体。要制作SAR干涉图,我们必须观察两次。在这些观察中,每个像素中的主要散射体必须相同。但是,在实际情况中,一个像素在物理上存在多个散射体,并且在两次观察中,主要的散射体可能会发生变化。入射角的微小差异可能会导致主要散射体和传播路径的变化。这种变化会在干涉图中产生奇异点(SPs),从而使我们无法准确地展开相位。在这里,我们介绍了在消声室中的实验结果,这些结果表明了奇异点生成的机理。

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