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首页> 外文期刊>IEEE Geoscience and Remote Sensing Letters >A Super-Resolution Computational Coincidence Imaging Method Based on SIMO Radar System
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A Super-Resolution Computational Coincidence Imaging Method Based on SIMO Radar System

机译:基于SIMO雷达系统的超高分辨率计算重合成像方法

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摘要

A super-resolution computational imaging method, called post random modulation radar imaging, based on single-input multiple-output radar detection system is proposed in this letter. In the proposed method, the target is detected in coherent mode using the multilinear frequency modulation signal. The echoes received by the radar elements of the receiving array are recorded, respectively. Then, random modulations of the directional pattern factor of the receiving radar array, which are nonlinear processes, are optimized according to the position and the size of the target that are estimated roughly using the traditional method. Finally, the super-resolution radar imaging is obtained to solve the equation group formed by the data from the nonlinear post random modulation process. The resolution of the proposed imaging method can break the diffraction limit corresponding to the aperture of the receiving radar array. The anti-interference ability of the proposed approach is improved significantly compared with the incoherent imaging method using a multiple-input single-output structure. Experiments are carried out to validate the proposed approach.
机译:本文提出了一种基于单输入多输出雷达探测系统的超分辨率计算成像方法,称为后随机调制雷达成像。在提出的方法中,使用多线性频率调制信号以相干模式检测目标。分别记录由接收阵列的雷达元件接收到的回波。然后,根据目标的位置和大小(使用传统方法粗略估计),对作为非线性过程的接收雷达阵列的方向图因子的随机调制进行优化。最后,获得超分辨率雷达成像,以解决由非线性后随机调制过程的数据形成的方程组。所提出的成像方法的分辨率可以打破与接收雷达阵列的孔径相对应的衍射极限。与使用多输入单输出结构的非相干成像方法相比,该方法的抗干扰能力得到了显着提高。进行实验以验证所提出的方法。

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