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The Impacts of Building Orientation on Polarimetric Orientation Angle Estimation and Model-Based Decomposition for Multilook Polarimetric SAR Data in Urban Areas

机译:建筑物方位对城市多视极化SAR数据的极化方位角估计和基于模型的分解的影响

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Building orientation with respect to the radar look direction has a critical influence on the interpretation of multilook polarimetric synthetic aperture radar (PolSAR) data in urban areas. In this paper, its impacts on polarimetric orientation angle (POA) estimation and model-based decomposition are discussed. The discussion begins with the analysis of the general double-bounce scattering model, of which the characteristics are dependent on the electromagnetic and geometric parameters of the related dihedral structure. Then, for multilook PolSAR data, the polarimetric scattering mechanism in urban areas is modeled by two double-bounce scatterings from two orthogonal dihedral structures. From the model, the impacts of the building orientation on POA estimation can be revealed. With the increase of the building orientation, the POA difference between the two dihedral structures increases gradually, and the feasibility to estimate the building orientation via the estimated POA is reduced dramatically. Upon further analysis, we illustrate the impacts on the model-based decomposition. With the increase of the building orientation, the dominant scattering mechanism labeling technique based on the model-based decompositions will gradually become invalid. Moreover, the processing of POA compensation, which is helpful in reducing the impacts of the building orientation, also becomes invalid when the building orientation increases to a certain value. At last, three L-band data sets of San Francisco acquired by AIRSAR are used to verify the inferences. The experimental results show that, for L-band PolSAR data in urban areas, when the radar look angle is around 45, the threshold of building orientation for the validity of dominant scattering mechanism labeling is about ±3, and for the POA compensation, the threshold is about ±12.
机译:相对于雷达视线方向的建筑物方位对市区多视极化合成孔径雷达(PolSAR)数据的解释具有至关重要的影响。本文讨论了它对极化取向角(POA)估计和基于模型的分解的影响。讨论从分析一般的双反弹散射模型开始,其特征取决于相关二面体结构的电磁和几何参数。然后,对于多视点PolSAR数据,通过来自两个正交二面体结构的两次双反射散射来模拟城市地区的极化散射机制。从模型中可以看出建筑物方位对POA估计的影响。随着建筑物方位的增加,两个二面体结构之间的POA差异逐渐增大,通过估算的POA估算建筑物方位的可行性大大降低。经过进一步分析,我们说明了对基于模型的分解的影响。随着建筑物方位的增加,基于模型分解的主导散射机制标记技术将逐渐失效。此外,当建筑物方位增加到一定值时,有助于减少建筑物方位的影响的POA补偿处理也变得无效。最后,使用AIRSAR采集的三个L波段旧金山数据集来验证推论。实验结果表明,对于城市地区的L波段PolSAR数据,当雷达视角为45°左右时,主导散射机制标记的有效性的建筑物方向阈值约为±3,而POA补偿的阈值约为±3。阈值约为±12。

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