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Polarimetric Scattering Indexes and Information Entropy of the SAR Imagery for Surface Monitoring

机译:SAR图像的偏振散射索引和信息熵用于表面监测

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The Mueller matrix solution and eigen-analysis of the coherency matrix for completely pdlarimetric scattering have been applied to analysis of the SAR (synthetic aperture radar) imagery. Co-polarized and cross-polarized backscattering for any polarized incidence can be obtained. The polarization index is usually defined as a parameter to classify the difference between polarized scattering signatures from the terrain surfaces. In this paper, the eigen-values of the coherency matrix and information entropy are derived to directly relate with measurements of the co-polarized and cross-polarized indexes. Thus, it combines the Mueller matrix simulation, the information entropy of the coherence matrix, and two polarization indexes together and yields a quantitative evaluation for surface classification in the SAR imagery. This theory is applied to analysis of the AirSAR images and fields measurements.
机译:已经应用了完全PDlaRimetric散射的官员矩阵溶液和完全散射的尖端分析,用于分析SAR(合成孔径雷达)图像。可以获得具有任何偏振发射的共偏振和交叉极化背散射。偏振指数通常被定义为用于对地形表面的偏振散射签名之间的差异分类的参数。在本文中,导出了一致性矩阵和信息熵的特征值,以直接涉及共偏振和交叉偏振指数的测量。因此,它将穆勒矩阵模拟,相干矩阵的信息熵和两个偏振指数组合在一起,并在SAR图像中产生了对表面分类的定量评估。该理论用于分析航空图像和场测量。

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