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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >A 3-D Novel Fast Back-Projection Imaging Algorithm for Stratified Media Based on Near-Field Monostatic and Bistatic SAR
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A 3-D Novel Fast Back-Projection Imaging Algorithm for Stratified Media Based on Near-Field Monostatic and Bistatic SAR

机译:基于近场单体和双晶特区的分层媒体三维新型快速回投影成像算法

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摘要

A fast back-projection (FBP) imaging algorithm is proposed to generate 3-D uniformly balanced images of an object embedded in a layered structure based on a combined near-field monostatic and bistatic synthetic aperture radar (SAR) system. The spectral layered Green's function is used in the FBP algorithm. Like conventional real-time imaging algorithms, the complexity of the imaging function is reduced via the stationary phase method, and the fast Fourier transform is implemented to accelerate the computation. Unlike conventional real-time imaging algorithms, the singularity problem associated with Green's function and antenna pattern is solved in this proposed algorithm by using a point spread function (PSF). For a real-time imaging system, besides fast image generation, an efficient data acquisition is needed. A combined monostatic and bistatic SAR configuration is used here to decrease the data collection time. The performance of this proposed FBP method is demonstrated by measurements of a stratified environment.
机译:提出了一种快速的背部投影(FBP)成像算法以基于组合的近场单体和双式合成孔径雷达(SAR)系统产生嵌入层状结构中的物体的3-D均匀平衡图像。光谱分层绿色的功能用于FBP算法。与传统的实时成像算法一样,通过静止相位方法降低成像功能的复杂性,并且实现了快速傅里叶变换以加速计算。与传统的实时成像算法不同,通过使用点扩展功能(PSF),以这种算法在这种算法中解决了与绿色功能和天线模式相关的奇点问题。对于实时成像系统,除了快速图像生成之外,需要一种有效的数据采集。这里使用组合的单体和双字母SAR配置来降低数据收集时间。通过分层环境测量证明了该提出的FBP方法的性能。

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