论文标题

具有毫米级分辨率的微波光子成像雷达

Microwave Photonic Imaging Radar with a Millimeter-level Resolution

论文作者

Ma, Cong, Yang, Yue, Liu, Ce, Fan, Beichen, Ye, Xingwei, Zhang, Yamei, Wang, Xiangchuan, Pan, Shilong

论文摘要

微波光子雷达可通过其广泛的带宽实现快速甚至实时的高分辨率成像。然而,雷达的频率范围通常与其他存在的射频(RF)应用重叠,并且仅报道了厘米级的成像分辨率,这使得它们不足以用于平民应用。在这里,我们通过基于光学频率变化循环引入频率稳定的CHIRP信号,提出了具有毫米级分辨率的微波光子成像雷达。与常规线性调制(LFM)信号相比,频率步进的CHIRP信号可以使系统具有出色的抗干扰能力。在实验中,产生了总带宽为18.2 GHz(16.9至35.1 GHz)的频率步进的CHIRP信号。通过二维成像分辨率约为8.5毫米$ \ times $ 〜8.3毫米,将雷达回声,雷达成像进行雷达成像。当存在频率干扰时,使用自动回归算法来重建受干扰的信号,并且高分辨率成像持续。

Microwave photonic radars enable fast or even real-time high-resolution imaging thanks to its broad bandwidth. Nevertheless, the frequency range of the radars usually overlaps with other existed radio-frequency (RF) applications, and only a centimeter-level imaging resolution has been reported, making them insufficient for civilian applications. Here, we propose a microwave photonic imaging radar with a millimeter-level resolution by introducing a frequency-stepped chirp signal based on an optical frequency shifting loop. As compared with the conventional linear-frequency modulated (LFM) signal, the frequency-stepped chirp signal can bring the system excellent capability of anti-interference. In an experiment, a frequency-stepped chirp signal with a total bandwidth of 18.2 GHz (16.9 to 35.1 GHz) is generated. Postprocessing the radar echo, radar imaging with a two-dimensional imaging resolution of ~8.5 mm$\times$~8.3 mm is achieved. An auto-regressive algorithm is used to reconstruct the disturbed signal when a frequency interference exists, and the high-resolution imaging is sustained.

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