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A novel AFNCS algorithm for super-resolution SAR in curve trajectory

机译:曲线轨迹超分辨率SAR的新型AFNCS算法

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摘要

With the improvement of SAR resolution, super-resolution SAR imaging is more and more widely used in the all-time and all-weather video surveillance and remote sensing imaging. One implementation of super-resolution SAR is that radar works in the spotlight mode. In the case with highly squinted angle and acceleration, the azimuth space variance and the coupling between range and azimuth will become serious in super-resolution imaging. Thus, an azimuth frequency nonlinear chirp scaling algorithm is proposed to solve this problem. Based on the acceleration model, the accurate 2-D spectrum is performed by adopting the method of series reversion. The space-variance of missile-borne SAR in curved flight path is analyzed and an azimuth polynomial phase filter is constructed to make the coefficients of the perturbation function has sufficient flexibility to eliminate the spatial-variant couple terms between range and azimuth. In addition, the gradient operation is used to expand the space-variant coefficients of azimuth modulation term, and the perturbation function is applied to eliminate the space-variant in azimuth direction. The proposed focusing method can process the missile-borne SAR data obtained in spotlight mode in highly squinted angle with high efficiency. The simulation results verify the effectiveness of the proposed imaging approach. The integration of the research in this paper and the deep learning will further pave the way of super-resolution SAR imaging applications in disaster monitoring, security and surveillance.
机译:随着SAR分辨率的提高,超级分辨率SAR成像在历史和全天候视频监控和遥感成像中越来越广泛地使用。超分辨率SAR的一个实施是雷达在聚光灯模式下工作。在具有高斜视角度和加速度的情况下,方位空间方差和范围和方位角之间的耦合将在超分辨率成像中变得严重。因此,提出了一种方位频非线性啁啾缩放算法来解决这个问题。基于加速模型,通过采用串联逆转方法来执行精确的2-D频谱。分析了导弹SAR在弯曲飞行路径中的空间方差,并且构造方位角多项式滤波器以使扰动功能的系数具有足够的灵活性,以消除范围和方位角之间的空间变体夫妇术语。另外,梯度操作用于扩展方位调制项的空间变量系数,并且施加扰动功能以消除方位方向上的空间变量。所提出的重点方法可以以高效率的高度眯起角度处理在聚光灯模式中获得的导弹传播的SAR数据。仿真结果验证了所提出的成像方法的有效性。在本文中的研究和深度学习将进一步铺平灾害监测,安全性和监视的超分辨率SAR成像应用方式。

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