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迈向太赫兹以下频段:用于宽带无线通信的时空编码超表面发射器。

Toward Sub-Terahertz: Space-Time Coding Metasurface Transmitter for Wideband Wireless Communications.

作者信息

Liu Yujie, Wang Yu, Fu Xiaojian, Shi Lei, Yang Fei, Luo Jiang, Zhou Qun Yan, Fu Yuan, Chen Qi, Dai Jun Yan, Zhang Lei, Cheng Qiang, Cui Tie Jun

机构信息

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

Institute of Electromagnetic Space, Southeast University, Nanjing, 210096, China.

出版信息

Adv Sci (Weinh). 2023 Oct;10(29):e2304278. doi: 10.1002/advs.202304278. Epub 2023 Aug 8.

Abstract

A space-time coding metasurface (STCM) operating in the sub-terahertz band to construct new-architecture wireless communication systems is proposed. Specifically, a programmable STCM is designed with varactor-diode-tuned metasurface elements, enabling precise regulation of harmonic amplitudes and phases by adjusting the time delay and duty cycle of square-wave modulation signal loaded on the varactor diodes. Independent electromagnetic (EM) regulations in the space and time domains are achieved by STCM to realize flexible beam manipulations and information modulations. Based on these features, a sub-terahertz wireless communication link is constructed by employing STCM as a transmitter. Experimental results demonstrate that the STCM supports multiple modulation schemes including frequency-shift keying, phase-shift keying, and quadrature amplitude modulations in a wide frequency band. It is also shown that the STCM is capable of realizing wide-angle beam scanning in the range of ±45 , which offers an opportunity for user tracking during the communication. Thus, the STCM transmitter with high device density and low power consumption can provide low-complexity, low-cost, low-power, and low-heat solutions for building the next-generation wireless communication systems in the sub-terahertz frequency and even terahertz band.

摘要

提出了一种工作在亚太赫兹频段的空时编码超表面(STCM),用于构建新型架构的无线通信系统。具体而言,设计了一种采用变容二极管调谐超表面元件的可编程STCM,通过调整加载在变容二极管上的方波调制信号的时间延迟和占空比,实现对谐波幅度和相位的精确调节。STCM在空间和时间域实现了独立的电磁(EM)调控,以实现灵活的波束操控和信息调制。基于这些特性,采用STCM作为发射机构建了一个亚太赫兹无线通信链路。实验结果表明,STCM在宽频带内支持包括频移键控、相移键控和正交幅度调制在内的多种调制方案。还表明,STCM能够在±45°范围内实现广角波束扫描,这为通信过程中的用户跟踪提供了机会。因此,具有高器件密度和低功耗的STCM发射机可为构建亚太赫兹频段乃至太赫兹频段的下一代无线通信系统提供低复杂度、低成本、低功耗和低热耗的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9164/10582441/8c3950f10af2/ADVS-10-2304278-g010.jpg

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