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Spatial Resolution of Bistatic Synthetic Aperture Radar: Impact of Acquisition Geometry on Imaging Performance

机译:双基地合成孔径雷达的空间分辨率:采集几何形状对成像性能的影响

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摘要

This paper analyzes the spatial resolution of bistatic synthetic aperture radar (SAR) in general hybrid configurations, such as air- and spaceborne systems moving along independent trajectories. The gradient method is utilized to point out the effects of the acquisition geometry, namely, position and velocity of both the transmitter and the receiver, on image resolution. This general approach is applied to different realizations of bistatic SAR, such as low-Earth-orbit monostatic–bistatic SAR, spaceborne-airborne bistatic SAR, and a bistatic system consisting of a high-altitude long-endurance illuminator and lower altitude airborne receivers. The main features of the method are then put in evidence, including the derivation of analytical tools to individuate adequate relative geometries for achieving satisfactory resolutions. A comparison to the other proposed techniques for computing the spatial resolution of bistatic SAR is also reported in order to highlight some peculiarities of all presented methodologies. Finally, the good agreement between the image resolution results achieved by recently carried out bistatic SAR experiments and the ones derived by the gradient method strengthens the potentialities of the proposed approach.
机译:本文分析了一般混合配置中的双基地合成孔径雷达(SAR)的空间分辨率,例如沿独立轨迹运动的空天系统。利用梯度法指出采集几何形状,即发射器和接收器的位置和速度对图像分辨率的影响。这种通用方法适用于双基地SAR的不同实现,例如低地球轨道单基地-双基地SAR,星空机载双基地SAR,以及由高空长寿命照明器和低空机载接收机组成的双基地系统。然后证明该方法的主要特征,包括推导分析工具以区分适当的相对几何形状以获得令人满意的分辨率。还报告了与其他提出的用于计算双基地SAR的空间分辨率的技术的比较,以突出所有提出的方法的一些特殊性。最后,最近进行的双基地SAR实验获得的图像分辨率结果与梯度法得出的图像分辨率结果之间的良好一致性增强了该方法的潜力。

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