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3-D Time-Domain SAR Imaging of a Forest Using Airborne Multibaseline Data at L- and P-Bands

机译:使用机载多基线数据在L波段和P波段对森林进行3D时域SAR成像

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In this paper, a time-domain back-projection based tomographic processing approach to a 3-D reconstruction grid is detailed, with the focusing in the third dimension being either modified versions of multilook standard beamforming, robust Capon beamforming, or multiple signal classification. The novel feature of the proposed approach compared to previous synthetic aperture radar (SAR) tomography approaches is that it allows for an approximation-free height-dependent calculation of the sample covariance matrix by exploiting the azimuth-focused data on the 3-D reconstruction grid. The method is applied to experimental multibaseline quad-pol SAR data at L- and P-bands acquired by German Aerospace Center's (DLR) E-SAR sensor: Tomographic images of a partially forested area, including a 3-D voxel plot that visualizes the very high level of detail of the tomographic image, are shown, and an analysis of the focusing performance is given for the full as well as reduced synthetic aperture in the normal direction.
机译:在本文中,详细介绍了针对3D重建网格的基于时域反投影的X线断层扫描处理方法,其中第三个方面的重点是多视图标准波束成形的改进版本,鲁棒的Capon波束成形或多信号分类。与以前的合成孔径雷达(SAR)层析成像方法相比,该方法的新颖之处在于,它可以通过利用3-D重建网格上的方位角相关数据,对样本协方差矩阵进行不依赖高度的近似计算。 。该方法适用于德国航空航天中心(DLR)的E-SAR传感器在L波段和P波段的实验性多基线四极化SAR数据:部分林区的断层图像,包括可视化图像的3-D体素图图中显示了非常高的断层图像细节,并对法线方向上的整个以及缩小的合成孔径进行了聚焦性能分析。

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