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Batch filtering of multi-baseline SAR interferograms

机译:批量过滤多基线SAR干扰图

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In current Interferometric synthetic aperture radar (InSAR) applications, small baseline subsets (SBAS) technique is frequently applied by setting both temporal baseline and perpendicular baseline thresholds to select interferograms with less decorrelations. However, in real cases, some high quality interferograms may be discarded and some low quality interferograms may be included based on the former thresholds. On the other hand, with the emergence of Big SAR data era, it is time-consuming and bothersome to determine real high quality interferograms manually or visually. Therefore, this paper proposes a means to determine high quality interferograms based on two thresholds, the one is the coherence of filtered interferograms, and the other is the percentage of high coherence points in interferograms. To this ends, first, robust estimation of coherence matrix of multi-baseline InSAR stack is adopted to restrain some heterogeneous points. Second, coherence matrix for each pixel is decomposed to get dominant phase signal based on the SAR scatterer mechanism. Once the interferograms are determined, phase unwrapping is easily conducted based on the high quality coherent points. Real eight scenes TerraSAR-X data over one land subsidence region is applied to verify of the proposed method.
机译:在当前干涉性合成孔径雷达(INSAR)应用中,通过设置时间基线和垂直基线阈值来频繁地应用小基线子集(SBA)技术,以选择具有较少去相关性的干扰图。然而,在实际情况下,可以丢弃一些高质量的干涉图,并且可以基于前阈值包括一些低质量的干涉图。另一方面,随着大型SAR数据时代的出现,它是耗时和困扰,以便手动或视觉地确定真正的高质量干涉图。因此,本文提出了一种基于两个阈值确定高质量干涉图的方法,是过滤干涉图的相干性,另一个是干涉图中的高相干点的百分比。为此,采用首先,采用了多基线套筒堆叠的相干矩阵的稳健估计来抑制一些异构点。其次,每个像素的相干矩阵被分解以基于SAR散射机构获得主导相位信号。一旦确定干涉图,就基于高质量的相干点容易地进行相位展开。 Real 8场景在一个地区沉降区域上的Terrasar-X数据应用于验证所提出的方法。

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