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Coherence estimation from multilook incoherent SAR imagery

机译:多视非相干SAR图像的相干估计

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This paper presents an unsupervised method capable to provide estimates of temporal coherence starting from a pair of multilook detected synthetic aperture radar (SAR) images of the same scene. The method relies on robust measurements of the temporal correlation of speckle patterns between the two pass dates. To this end, a nonlinear transformation aimed at decorrelating the data across time while retaining the multiplicative noise model is defined as the pixel geometric mean and ratio of the two overlapped images. The temporal correlation coefficient (TCC) of speckle is analytically derived from the noise variances, measured in the transformed pair of images as regression coefficients of local standard deviation to local mean, calculated on homogeneous, i.e., nontextured, pixels. Such pixels are identified based on the observation that homogeneous areas produce clustered scatter-points that are aligned along the regression line. Experiments were carried out on two pairs of multitemporal SAR observations, from the European Remote Sensing 1/2 (ERS-1/2) tandem mission and from the 1994 SIR-C mission. A good fit with the true coherence values was found, irrespective of the presence of textures; when the true coherence was unavailable, the estimated coherence results match the available ground truth data.
机译:本文提出了一种无监督方法,该方法能够从同一场景的一对多视点检测到的合成孔径雷达(SAR)图像开始提供时间相干性估计。该方法依赖于两个通过日期之间散斑图案的时间相关性的鲁棒测量。为此,在保留乘性噪声模型的同时,将跨时间对数据进行去相关的非线性变换定义为像素几何平均值和两个重叠图像的比率。斑点的时间相关系数(TCC)是从噪声方差分析得出的,该噪声方差是在变换后的图像对中测量的,是根据均质(即非纹理化)像素计算的局部标准偏差到局部平均值的回归系数。基于观察到的均匀像素区域是均匀的区域会生成聚集的散射点,这些散射点沿着回归线对齐的事实被识别出来。从欧洲遥感1/2(ERS-1 / 2)串联任务和1994 SIR-C任务对两对多时SAR观测进行了实验。无论是否存在纹理,都可以找到与真实相干值的良好契合度。当没有真正的相干性时,估计的相干性结果将与可用的地面真实数据匹配。

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