Super-resolution imaging method based on random radiation radar array

Yuanyue Guo, Dongjin Wang, Xuezhi He, Bo Liu
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引用次数: 9

Abstract

For the purpose of obtaining high-resolution staring image of ground targets by high-altitude imaging platforms, this paper proposes a super-resolution imaging approach based on random radiation radar array by combining random signal radiation and correlated imaging. Firstly, this super-resolution imaging principles are analyzed, and the definition of temporal-spatial stochastic characteristics of the radiating electromagnetic field on the target space are presented, and on this basis, the super-resolution imaging potentiality of random radiation radar array is demonstrated theoretically beyond the limitation of antenna aperture. Then the imaging model of stochastic radiation radar array is founded. The influences of random signals and the spatial configuration of the radar array (number of array elements and array aperture) on stochastic characteristics of the radiation field are discussed in detail. Finally, the imaging simulations are performed and the results show that random radiation radar array can improve its resolution by more than 20 times compared with a real aperture radar array with the same size.
基于随机辐射雷达阵列的超分辨率成像方法
针对高空成像平台获取地面目标高分辨率凝视图像的问题,本文提出了一种基于随机辐射雷达阵列的随机信号辐射与相关成像相结合的超分辨率成像方法。首先,分析了该超分辨成像原理,给出了辐射电磁场在目标空间上的时空随机特征的定义,在此基础上,从理论上论证了随机辐射雷达阵列不受天线孔径限制的超分辨成像潜力。然后建立了随机辐射雷达阵的成像模型。详细讨论了随机信号和雷达阵列的空间构型(阵元数和阵列孔径)对辐射场随机特性的影响。最后,进行了成像仿真,结果表明随机辐射雷达阵列的分辨率比相同尺寸的真实孔径雷达阵列提高了20倍以上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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