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A new look at spotlight mode synthetic aperture radar as tomography: imaging 3-D targets

机译:聚焦模式合成孔径雷达作为断层摄影技术的新视角:对3D目标成像

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A new 3D tomographic formulation of spotlight mode synthetic aperture radar (SAR) is developed. This extends the pioneering work of Munson et al. (1983), who first formally described SAR in terms of tomography but who made the simplifying assumption that the target scene was 2D. The present authors treat the more general and practical case in which the radar target reflectivities comprise a 3D function. The main goal is to demonstrate that the demodulated radar return data from a spotlight mode collection represent a certain set of samples of the 3D Fourier transform of the target reflectivity function and to do so using a tomographic paradigm instead of traditional range-Doppler analysis. They also show that the tomographic approach is useful in interpreting the reconstructed 2D SAR image corresponding to a 3D scene. Specifically, the well-known SAR phenomenon of layover is easily explained in terms of tomographic projections and is shown to be analogous to the projection effect in conventional optical imaging.
机译:开发了聚光模式合成孔径雷达(SAR)的新3D层析成像公式。这扩展了Munson等人的开拓性工作。 (1983年),他首先以断层摄影术形式正式描述了SAR,但他简化了假设,即目标场景是2D。作者研究了雷达目标反射率具有3D功能的更为一般和实际的情况。主要目的是证明来自聚光灯模式集合的解调雷达返回数据代表目标反射率函数的3D傅里叶变换的特定样本集,并使用层析成像范例代替传统的距离多普勒分析。他们还表明,层析成像方法可用于解释与3D场景相对应的重建2D SAR图像。具体而言,众所周知的叠加的SAR现象很容易用断层扫描投影来解释,并且显示出与常规光学成像中的投影效果类似。

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