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Using scattering decomposition to improve the estimation of the topography-induced polarization orientation angle

机译:使用散射分解改进对地形诱发的极化取向角的估计

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摘要

Polarization orientation angle (POA) shifts produced by topography variations lead to rotating polarization around the radar beam direction. In addition to slope topography, depolarization induced by volume scattering and orientation of dihedral target impact POA which is used for deorientation and, in some cases, topography measurement. Unlike deorientation, to provide reliable topography measurements, it is essential to accurately estimate shifts in POA caused by topography variations, not volume scattering or oriented dihedral. The existing POA estimation methods approximately provide topography POA using an averaged POA. In this letter, a modified POA estimation method was proposed to achieve a high consistency with topography. The proposed method initially reconstructed some sub-scatterers using eigenvalue/eigenvector Cloude-Pottier decomposition. In the second step, the type of scattering mechanisms was determined using Cloude decomposition. Then, it compensated for the POA of the dihedral and the volume-reconstructed sub-scatterers using the POA of each of them obtained with the help of Huynen's desying operation. Finally, topography POA was obtained from the new coherency matrix. The experimental results were evaluated by the digital elevation model (DEM)-derived POA. Results demonstrated that the proposed method L- and P-band derived POA are 1.48° and 1.55° better than the averaged POA in the existing method.
机译:地形变化产生的极化取向角(POA)位移导致绕雷达波束方向旋转的极化。除坡度形貌外,由体积散射和二面体目标取向引起的去极化还会影响POA,POA会用于脱取向,在某些情况下还用于形貌测量。与脱取向不同,要提供可靠的形貌测量结果,必须准确估计由形貌变化而不是体积散射或定向的二面体引起的POA偏移。现有的POA估计方法使用平均POA近似提供地形POA。在这封信中,提出了一种改进的POA估计方法,以实现与地形的高度一致性。所提出的方法最初使用特征值/特征向量Cloude-Pottier分解重建了一些子散射体。在第二步中,使用Cloude分解确定散射机制的类型。然后,它利用在惠恩的“ desying”操作的帮助下获得的每个面的POA来补偿二面体和体积重构的子散射体的POA。最后,从新的相干矩阵中获得了地形POA。通过数字高程模型(DEM)衍生的POA评估了实验结果。结果表明,所提出的方法获得的L波段和P波段POA分别比现有方法中的平均POA高1.48°和1.55°。

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