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1. 东南大学,江苏 南京 210007
2. 香港城市大学,香港 999077
[ "程强(1979− ),男,东南大学信息科学与工程学院教授,主要研究方向为超材料的物理机理、设计理论及其在通信、雷达和天线中的应用" ]
[ "戴俊彦(1991− ),男,博士,香港城市大学毫米波与太赫兹国家重点实验室在站博士后,主要研究方向为时空调制智能超表面、基于智能超表面的无线通信系统、测向系统的原型验证" ]
[ "柯俊臣(1995− ),男,东南大学博士生,主要研究方向为可编程超表面、阵列天线和基于智能超表面的无线通信系统" ]
[ "梁竟程(1994− ),男,东南大学博士生,主要研究方向为智能超表面单元设计" ]
[ "王思然(1993− ),男,东南大学博士生,主要研究方向为时空调制智能超表面和基于智能超表面的无线通信系统" ]
网络出版日期:2021-09,
纸质出版日期:2021-09-20
移动端阅览
程强, 戴俊彦, 柯俊臣, 等. 智能超表面在波束及信息调控中的应用[J]. 电信科学, 2021,37(9):30-37.
Qiang CHENG, Junyan DAI, Junchen KE, et al. Application of reconfigurable intelligent surface in beamforming and information modulation[J]. Telecommunications science, 2021, 37(9): 30-37.
程强, 戴俊彦, 柯俊臣, 等. 智能超表面在波束及信息调控中的应用[J]. 电信科学, 2021,37(9):30-37. DOI: 10.11959/j.issn.1000-0801.2021226.
Qiang CHENG, Junyan DAI, Junchen KE, et al. Application of reconfigurable intelligent surface in beamforming and information modulation[J]. Telecommunications science, 2021, 37(9): 30-37. DOI: 10.11959/j.issn.1000-0801.2021226.
现代移动通信中无线信道的随机性、不确定性和不可控性是影响通信质量的关键因素,往往会导致接收端信号质量降低,从而限制了信息传输的速率与范围。目前正兴起的6G技术研究中,智能超表面是被积极讨论的研究方向之一,其是由亚波长结构组成的超薄人工表面,具有现场可编程能力和时空信息调制能力,可精准、高效地操控电磁波,可被用于重塑无线传播环境。通过对智能超表面的概念、基于时空调制的波束调控方法、基于智能超表面的无线中继以及通信系统 4 个方面的综述和分析,展示了智能超表面在辅助移动通信中具有的应用潜力,为6G的发展提供了新的思路。
In modern mobile communications
the randomness
uncertainty
and uncontrollability of wireless channels are the pivotalfactors that affect the communication quality
which often leads to the deterioration of the signal quality at the receiving terminal
and thereby limiting the rate and range of information transmission.In the emerging study of 6G technology
reconfigurable intelligent surface is one of the research directions under active discussions
which is an ultra-thin artificial surface composed of sub-wavelength structures with field programmability and spatiotemporal information modulation capabilities.The reconfigurable intelligent surface can manipulate electromagnetic waves accurately and efficiently
thus providing the possibility for reshaping the wireless propagation environment.In this review
the concept of the reconfigurable intelligent surface
the beam forming method based on spatiotemporal modulation
the wireless relay and the communication system based on the reconfigurable intelligent surface were reviewed and discussed.It demonstrates the great potential of reconfigurable intelligent surface in assisting mobile communication
and provides new ideas for the development of 6G.
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DAI J Y , ZHAO J , CHENG Q , et al . Independent control of harmonic amplitudes and phases via a time-domain digital coding metasurface [J ] . Light:Science & Applications , 2018 ( 7 ): 90 .
ZHAO J , YANG X , DAI J Y , et al . Programmable time-domain digital-coding metasurface for non-linear harmonic manipulation and new wireless communication systems [J ] . National Science Review , 2019 , 6 ( 2 ): 231 - 238 .
HAN Y , TANG W K , JIN S , et al . Large intelligent surface-assisted wireless communication exploiting statistical CSI [J ] . IEEE Transactions on Vehicular Technology , 2019 , 68 ( 8 ): 8238 - 8242 .
TANG W K , DAI J Y , CHEN M Z , et al . Programmable metasurface-based RF chain-free 8PSK wireless transmitter [J ] . Electronics Letters , 2019 , 55 ( 7 ): 417 - 420 .
CUI T J , QI M Q , WAN X , et al . Coding metamaterials,digital metamaterials and programmable metamaterials [J ] . Light:Science & Applications , 2014 , 3 ( 10 ): e218 .
DAI J Y , TANG W K , ZHAO J , et al . Wireless communications through a simplified architecture based on time-domain digital coding metasurface [J ] . Advanced Materials Technologies , 2019 , 4 ( 7 ): 1900044 .
ZHANG L , CHEN X Q , LIU S , et al . Space-time-coding digital metasurfaces [J ] . Nature Communications , 2018 ( 9 ): 4334 .
ZHANG L , CHEN M Z , TANG W K , et al . A wireless communication scheme based on space and frequencydivision multiplexing using digital metasurfaces [J ] . Nature Electronics , 2021 , 4 ( 3 ): 218 - 227 .
TANG W K , CHEN M Z , CHEN X Y , et al . Wireless communications with reconfigurable intelligent surface:path loss modeling and experimental measurement [J ] . IEEE Transactions on Wireless Communications , 2021 , 20 ( 1 ): 421 - 439 .
WU Q Q , ZHANG R . Intelligent reflecting surface enhanced wireless network via joint active and passive beamforming [J ] . IEEE Transactions on Wireless Communications , 2019 , 18 ( 11 ): 5394 - 5409 .
CUI M , ZHANG G C , ZHANG R . Secure wireless communication via intelligent reflecting surface [J ] . IEEE Wireless Communications Letters , 2019 , 8 ( 5 ): 1410 - 1414 .
WELKIE A , SHANGGUAN L F , GUMMESON J , et al . Programmable radio environments for smart spaces [C ] // Proceedings of the 16th ACM Workshop on Hot Topics in Networks . New York:ACM Press , 2017 .
TANG W K , LI X , DAI J Y , et al . Wireless communications with programmable metasurface:transceiver design and experimental results [J ] . China Communications , 2019 , 16 ( 5 ): 46 - 61 .
DAI J Y , TANG W K , YANG L X , et al . Realization of multi-modulation schemes for wireless communication by time-domain digital coding metasurface [J ] . IEEE Transactions on Antennas and Propagation , 2020 , 68 ( 3 ): 1618 - 1627 .
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