非线性飞行路径的三维合成孔径雷达成像

C. Austin, R. Moses
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引用次数: 20

摘要

传统的三维(3D)傅立叶合成孔径雷达(SAR)成像需要在一个场景上多次线性通过的雷达回波集合。通过增加这些通道在方位角和仰角上的范围来提高图像分辨率。因此,高分辨率图像需要大量的数据收集时间和存储容量。在这项工作中,我们研究了稀疏非线性采集路径下广角三维SAR图像的重建。这种收集方式比传统的线性收集需要更少的数据采集时间和存储容量。利用lscr1惩罚最小二乘反演从实测雷达回波中重建图像。给出了一个例子,表明利用沿稀疏非线性路径收集的数据可以形成具有良好分辨特征的图像。
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Wie-Angle Sarse 3D Synthetic Aerture Radar Imaging for Nonlinear Flight Paths
Conventional three-dimensional (3D) Fourier synthetic aperture radar (SAR) imaging requires a collection of radar returns from multiple linear passes over a scene. Image resolution is improved by increasing the extent of these passes in azimuth and elevation. Hence, high resolution imagery requires large data collection times and storage capacity. In this work we investigate wide-angle 3D SAR image reconstruction for a sparse nonlinear collection path. This collection modality requires less data acquisition time and storage capacity than conventional linear collection. Images are reconstructed from measured radar returns using lscr1 -penalized least-squares inversion. An example is presented demonstrating that images with well-resolved features can be formed using data collected along a sparse nonlinear path.
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