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基于超表面的单镜头单传感器高/超分辨率微波成像

Single-shot and single-sensor high/super-resolution microwave imaging based on metasurface.

作者信息

Wang Libo, Li Lianlin, Li Yunbo, Zhang Hao Chi, Cui Tie Jun

机构信息

School of Electronics Engineering and Computer Science, Peking University, Beijing 100871, China.

State Key Laboratory of Millimeter Waves, Southeast University, Nanjing 210096, China.

出版信息

Sci Rep. 2016 Jun 1;6:26959. doi: 10.1038/srep26959.

Abstract

Real-time high-resolution (including super-resolution) imaging with low-cost hardware is a long sought-after goal in various imaging applications. Here, we propose broadband single-shot and single-sensor high-/super-resolution imaging by using a spatio-temporal dispersive metasurface and an imaging reconstruction algorithm. The metasurface with spatio-temporal dispersive property ensures the feasibility of the single-shot and single-sensor imager for super- and high-resolution imaging, since it can convert efficiently the detailed spatial information of the probed object into one-dimensional time- or frequency-dependent signal acquired by a single sensor fixed in the far-field region. The imaging quality can be improved by applying a feature-enhanced reconstruction algorithm in post-processing, and the desired imaging resolution is related to the distance between the object and metasurface. When the object is placed in the vicinity of the metasurface, the super-resolution imaging can be realized. The proposed imaging methodology provides a unique means to perform real-time data acquisition, high-/super-resolution images without employing expensive hardware (e.g. mechanical scanner, antenna array, etc.). We expect that this methodology could make potential breakthroughs in the areas of microwave, terahertz, optical, and even ultrasound imaging.

摘要

利用低成本硬件实现实时高分辨率(包括超分辨率)成像,是各种成像应用中长期追求的目标。在此,我们提出通过使用时空色散超表面和成像重建算法,实现宽带单脉冲和单传感器高/超分辨率成像。具有时空色散特性的超表面确保了单脉冲和单传感器成像仪用于超分辨率和高分辨率成像的可行性,因为它可以将被探测物体的详细空间信息有效地转换为由固定在远场区域的单个传感器获取的一维时间或频率相关信号。通过在后处理中应用特征增强重建算法可以提高成像质量,并且所需的成像分辨率与物体和超表面之间的距离有关。当物体放置在超表面附近时,可以实现超分辨率成像。所提出的成像方法提供了一种独特的手段,无需使用昂贵的硬件(如机械扫描仪、天线阵列等)即可进行实时数据采集和高/超分辨率成像。我们期望这种方法能够在微波、太赫兹、光学甚至超声成像领域取得潜在突破。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32b6/4887868/0fd6b3551801/srep26959-f1.jpg

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