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Radar imaging using electromagnetic wave carrying orbital angular momentum

机译:使用携带轨道角动量的电磁波进行雷达成像

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The concept of radar imaging based on orbital angular momentum (OAM) modulation, which has the ability of azimuthal resolution without relative motion, has recently been proposed. We investigate this imaging technique further in greater detail. We first analyze the principle of the technique, accounting for its resolving ability physically. The phase and intensity distributions of the OAM-carrying fields produced by phased uniform circular array antenna, which have significant effects on the imaging results, are investigated. The imaging model shows that the received signal has the form of inverse discrete Fourier transform with the use of OAM and frequency diversities. The two-dimensional Fourier transform is employed to reconstruct the target images in the case of large and small elevation angles. Due to the peculiar phase and intensity characteristics, the small elevation is more suitable for practical application than the large one. The minimum elevation angle is then obtained given the array parameters. The imaging capability is analyzed by means of the point spread function. All results are verified through numerical simulations. The proposed staring imaging technique can achieve extremely high azimuthal resolution with the use of plentiful OAM modes. (C) 2017 SPIE and IS&T
机译:近来提出了基于轨道角动量(OAM)调制的雷达成像的概念,其具有方位角分辨率而没有相对运动。我们将更详细地研究这种成像技术。我们首先分析该技术的原理,从物理上考虑其分辨能力。研究了相控均匀圆形阵列天线产生的OAM载运场的相位和强度分布,这对成像结果有重要影响。成像模型表明,使用OAM和频率分集,接收到的信号具有离散傅立叶逆变换的形式。在大和小的仰角的情况下,采用二维傅立叶变换来重建目标图像。由于具有独特的相位和强度特性,小标高比大标高更适合实际应用。然后在给定阵列参数的情况下获得最小仰角。通过点扩散函数分析成像能力。所有结果均通过数值模拟验证。所提出的凝视成像技术可以通过使用多种OAM模式来实现极高的方位分辨率。 (C)2017 SPIE和IS&T

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