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ANALYSIS OF PERFORMANCE OF FLAT EARTH PHASE REMOVAL METHODS

机译:平地相去除方法的性能分析

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Interferometric synthetic aperture radar (InSAR) has been widely used in remote sensing field, which can reflect actual topographic trend or possible surface deformation. Due to the orbit attitude influence, the flat-earth phase usually causes the interferogram dense and difficult to be used in further procedures. Before phase unwrapping, interferogram must be flattened to derive accurate topographic or deformation information. In this paper, analysis of performance of two methods of flat-earth removal is done. First method uses imaging geometry and second method uses precise orbital information. Further, 3-degree, 5-degree and 7-degree polynomials are fitted in the method using precise orbital information. Validation is done both visually and empirically using entropy as the evaluation index.
机译:干涉式合成孔径雷达(InSAR)已广泛应用于遥感领域,可以反映实际的地形趋势或可能的表面变形。由于轨道姿态的影响,平地相位通常会导致干涉图密集,并且难以在后续程序中使用。在相位展开之前,必须将干涉图展平以得出准确的形貌或变形信息。本文对两种平地去除方法的性能进行了分析。第一种方法使用成像几何形状,第二种方法使用精确的轨道信息。此外,使用精确的轨道信息将3度,5度和7度多项式拟合到该方法中。使用熵作为评估指标,可以在视觉和经验上进行验证。

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