Photonics-based array radar imaging using an optically injected semiconductor laser

Guanqun Sun, Fangzheng Zhang, Jiayuan Kong, Xiaoyue Yu, Jinhu Li, S. Pan
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Abstract

We propose and demonstrate a high-resolution array radar imaging system with broadband photonic signal generation and processing. The proposed array radar transmits linear frequency modulated (LFM) signals generated by an optically injected semiconductor laser. Since the signal bandwidth is greatly enlarged over traditional electric radars, a significantly improved range resolution can be achieved. To obtain high-quality images, a sub-aperture weighting method is applied, which can suppress the high-energy artifacts and background interferences. In the experiment, an LFM signal with a bandwidth of 8 GHz (18 GHz - 26 GHz) is generated, and the theoretical range resolution is 1.875 cm. Using this signal generator, a photonics-based 1×16 array radar is established, based on which high-resolution imaging is successfully demonstrated.
利用光注入半导体激光器的基于光子的阵列雷达成像
我们提出并演示了一种具有宽带光子信号产生和处理的高分辨率阵列雷达成像系统。所提出的阵列雷达传输由光注入半导体激光器产生的线性调频信号。由于信号带宽比传统的电雷达大大扩大,可以实现显著提高距离分辨率。为了获得高质量的图像,采用了子孔径加权法,该方法可以抑制高能伪影和背景干扰。实验中产生带宽为8 GHz (18 GHz - 26 GHz)的LFM信号,理论距离分辨率为1.875 cm。利用该信号发生器,建立了基于光子的1×16阵列雷达,并在此基础上成功实现了高分辨率成像。
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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