Hu Qi, Chen Ke, Zheng Yilin, Xu Zhiyuan, Zhao Jianmin, Wang Jian, Feng Yijun
School of Electronic Science and Engineering, Nanjing University, Nanjing, 210093, China.
Nanophotonics. 2023 Mar 7;12(7):1327-1336. doi: 10.1515/nanoph-2023-0027. eCollection 2023 Apr.
Reconfigurable metasurfaces have emerged as a promising alternative to the conventional transmitter of wireless communication systems, due to their abilities of encoding digital information onto electromagnetic properties without complex radio-frequency chains. However, most of them are still limited to narrow operation bandwidth. Here, we propose a broadband metasurface-based wireless communication system that can actively adapt to multiple users located at versatile directions through joint modulation of digital signals in the time domain and wave scatterings in the space domain. As exemplary demonstrations, highly directive beams are generated to enhance regional signals in real-time customized for users in desired directions and reduce the signal leakage in undesired directions. Experiments are carried out to verify that the system can provide stable wireless communication service in a broad band of 3.7-5.1 GHz, within which the transmitted color picture enabled by the time-varying spatial modulation of metasurface can be successfully recovered at the user terminals. The proposed system may offer untapped potentials for next-generation communications and radar systems where regional signal enhancement, active adaption to users, and large channel capacities are required.
可重构超表面已成为无线通信系统中传统发射机的一种有前途的替代方案,这是因为它们能够在无需复杂射频链路的情况下将数字信息编码到电磁特性上。然而,它们中的大多数仍局限于窄工作带宽。在此,我们提出一种基于超表面的宽带无线通信系统,该系统可以通过在时域中对数字信号和在空域中对波散射进行联合调制,主动适应位于不同方向的多个用户。作为示例演示,生成高指向性波束以实时为期望方向上的用户定制增强区域信号,并减少不期望方向上的信号泄漏。进行实验以验证该系统能够在3.7 - 5.1 GHz的宽带内提供稳定的无线通信服务,在该频段内,由超表面的时变空间调制实现的传输彩色图片能够在用户终端成功恢复。所提出的系统可能为下一代通信和雷达系统提供尚未开发的潜力,这些系统需要区域信号增强、对用户的主动适应以及大信道容量。