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ADAPTIVE SPATIAL FILTERING OF INTERFEROMETRIC DATA STACK ORIENTED TO DISTRIBUTED SCATTERERS

机译:导向到分布式散射体的干涉数据堆栈的自适应空间滤波

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Standard interferometry poses a challenge in non-urban areas due to temporal and spatial decorrelation of the radar signal, where there is high signal noise.Techniques such as Small Baseline Subset Algorithm (SBAS) have been proposed to make use of multiple interferometric combinations to alleviate the problem.However, the interferograms used in SBAS are multilooked with a boxcar (rectangle) filter to reduce phase noise, resulting in a loss of resolution and signal superstition from different objects.In this paper, we proposed a modified adaptive spatial filtering algorithm for accurate estimation of interferogram and coherence without resolution loss even in rural areas, to better support the deformation monitoring with time series interferometric synthetic aperture radar (InSAR) technique.The implemented method identifies the statistically homogenous pixels in a ncighboutrhood based on the goodness-of-fit test, and then applies an adaptive spatial filtering of interferograms.Three statistical tests for the identification of distributed targets will be presented, applied to real data.PALSAR data of the yellow river delta in China is used for demonstrating the effectiveness of this algorithm in rural areas.
机译:标准干涉造成的,由于雷达信号,其中有高信号noise.Techniques如小基线子集算法(SBAS)的时间和空间去相关非城市地区的挑战已经提出了利用多个干涉组合,以减轻的问题。然而,在SBAS使用的干涉图multilooked用棚车(矩形)滤波器来降低相位噪声,导致从不同objects.In本文分辨率和信号迷信的损失,我们提出了一种改进自适应空间滤波算法干涉和连贯性,甚至没有在农村地区的分辨率损失的准确估计,以更好地支持变形与时间序列干涉合成孔径雷达监视(干涉SAR)technique.The实现的方法识别在ncighboutrhood统计学均匀像素基于所述拟合优度OF-适合的测试,然后应用interferograms.Three ST的自适应空间滤波分布式目标的确定atistical测试将呈现,适用于中国黄河三角洲的实际data.PALSAR数据用于证明该算法在农村地区的有效性。

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