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A Fast Radial Scanned Near-Field 3-D SAR Imaging System and the Reconstruction Method

机译:快速径向扫描近场3-D SAR成像系统及重建方法

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摘要

This paper presents a near-field 3-D synthetic aperture radar (SAR) imaging system for which the 2-D aperture is radially scanned. Compared to the current SAR imaging systems, the proposed system has several advantages such as quick data collection, full 360 $^{circ}$ inspection of target, and simple image formation processing. However, in radial scan, the samples do not fall on a Cartesian grid, which prevents us from using the fast Fourier transform (FFT) to form SAR image without calling for interpolation. In this paper, the 2-D nonuniform FFT (NUFFT) is used for dealing with the problem. After 2-D NUFFT of the radial sampled data, the 3-D reflectivity image can be efficiently reconstructed by using the 3-D version of the range migration algorithm. The Stolt mapping has been implemented implicitly by another 1-D NUFFT to reduce the artifacts caused by the conventional interpolation processing. In addition, to alleviate the data sampling burden, a compressed 2-D slow-time sampling strategy is also discussed. Finally, the proposed Rad-SAR system and the imaging method are demonstrated using near-field wideband simulation data.
机译:本文提出了一种近场3-D合成孔径雷达(SAR)成像系统,其中对2-D孔径进行了径向扫描。与当前的SAR成像系统相比,该系统具有以下优点:数据收集快速,完整的360度 $ ^ {circ} $ < / inline-formula>目标检查和简单的图像形成处理。但是,在径向扫描中,样本不会落在笛卡尔网格上,这使我们无法使用快速傅里叶变换(FFT)形成SAR图像而无需进行插值。在本文中,二维非均匀FFT(NUFFT)用于解决该问题。在对径向采样数据进行2-D NUFFT之后,可以使用范围迁移算法的3-D版本有效地重建3-D反射率图像。 Stolt映射已由另一个1-D NUFFT隐式实现,以减少由常规插值处理引起的伪像。另外,为了减轻数据采样负担,还讨论了压缩的二维慢时间采样策略。最后,利用近场宽带仿真数据对所提出的Rad-SAR系统和成像方法进行了论证。

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