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Bistatic Synthetic Aperture Radar Imaging for Arbitrary Flight Trajectories

机译:用于任意飞行轨迹的双基地合成孔径雷达成像

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摘要

In this paper, we present an analytic, filtered backprojection (FBP) type inversion method for bistatic synthetic aperture radar (BISAR). We consider a BISAR system where a scene of interest is illuminated by electromagnetic waves that are transmitted, at known times, from positions along an arbitrary, but known, flight trajectory and the scattered waves are measured from positions along a different flight trajectory which is also arbitrary, but known. We assume a single-scattering model for the radar data, and we assume that the ground topography is known but not necessarily flat. We use microlocal analysis to develop the FBP-type reconstruction method. We analyze the computational complexity of the numerical implementation of the method and present numerical simulations to demonstrate its performance.
机译:在本文中,我们提出了一种用于双基地合成孔径雷达(BISAR)的解析滤波反投影(FBP)型反演方法。我们考虑一个BISAR系统,其中感兴趣的场景由电磁波照亮,电磁波在已知时间从任意但已知的飞行轨迹的位置传输,而散射波是从沿着不同飞行轨迹的位置测量的,武断,但众所周知。我们假设雷达数据为单散射模型,并且假设地面地形是已知的,但不一定平坦。我们使用微局部分析来开发FBP型重建方法。我们分析了该方法的数值实现的计算复杂性,并提供了数值模拟以证明其性能。

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