Optical Interconnects for Future Advanced Antenna Systems: Architectures, Requirements and Technologies

被引:7
|
作者
Testa, Francesco [1 ]
Wade, Mark T. [2 ]
Lostedt, Mikael [3 ]
Cavaliere, Fabio [4 ]
Romagnoli, Marco [5 ]
Stojanovic, Vladimir [2 ]
机构
[1] Scuola Super Sant Anna, TeCIP Inst, I-56124 Pisa, Italy
[2] Ayar Labs Inc, Emeryville, CA 94608 USA
[3] Ericsson AB, S-22362 Lund, Sweden
[4] Ericsson Res, I-56124 Pisa, Italy
[5] CNIT, Photon Networks & Technol Lab, I-56124 Pisa, Italy
关键词
Array signal processing; Antennas; Bandwidth; Antenna arrays; Optical interconnections; Digital-analog conversion; Transmitting antennas; optical transmitters; optical receiver; MIMO; mobile communication; silicon photonics; optical interconnects;
D O I
10.1109/JLT.2021.3113999
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This paper aims to give an outlook of future advanced antenna systems for 5G and 6G wireless networks. The trend to increase the peak data rate and to reduce latency and power consumption will continue in the future. This will be made possible by the exploitation of millimeter wave frequency bands and by the introduction of massive multiple-input multiple-output antenna technology which requires a transformation of the antenna hardware architectures and technologies. Advanced antenna systems based on arrays of several hundreds of antenna elements are under development and to keep the fronthaul throughput manageable, some digital signal processing functions have been moved inside the antenna, creating the need to distribute very big volumes of data at high bit rate across the antenna. The characteristics and hardware architecture of future advanced antenna systems are discussed and the relevant interconnect requirements are presented. A new type of monolithically integrated optical transceiver is presented, integrating electronic and photonic circuits on the same chip with high bandwidth density, high energy efficiency and low latency. The transceiver technology is discussed and results of experimental demonstrations are given.
引用
收藏
页码:393 / 403
页数:11
相关论文
共 50 条
  • [31] Architectures and Technologies for the Future Mobile Internet
    Raychaudhuri, Dipankar
    IEICE TRANSACTIONS ON COMMUNICATIONS, 2010, E93B (03) : 436 - 441
  • [32] Device Requirements for Optical Interconnects to Silicon Chips
    Miller, David A. B.
    PROCEEDINGS OF THE IEEE, 2009, 97 (07) : 1166 - 1185
  • [33] Advanced Antenna Manufacturing Technologies
    Krupa, S.
    Wittwer, D.
    Martiskainen, M.
    Elliott, M.
    Lee, D.
    Hard, S.
    Shalgi, Y.
    Quantz, S.
    IEEE INTERNATIONAL CONFERENCE ON MICROWAVES, COMMUNICATIONS, ANTENNAS AND ELECTRONICS SYSTEMS (COMCAS 2009), 2009,
  • [34] PARALLEL OPTICAL INTERCONNECTS - IMPLEMENTATION OF OPTOELECTRONICS IN MULTIPROCESSOR ARCHITECTURES
    FRIETMAN, EEE
    VANNIFTERICK, W
    DEKKER, L
    JONGELING, TJM
    APPLIED OPTICS, 1990, 29 (08): : 1161 - 1177
  • [35] Test facilities study for the NASA advanced CNS architectures and systems technologies project
    Wargo, Chris A.
    Kerczewski, Robert J.
    Buchanan, David A.
    2005 IEEE Aerospace Conference, Vols 1-4, 2005, : 1816 - 1824
  • [36] Nonlinear Compensation Technologies for Future Optical Communication Systems
    Oyama, Tomofumi
    Hoshida, Takeshi
    Nakashima, Hisao
    Oda, Shoichiro
    Yamauchi, Tomohiro
    Tanimura, Takahito
    Dou, Liang
    Zhao, Ying
    Tao, Zhenning
    Rasmussen, Jens C.
    NEXT-GENERATION OPTICAL COMMUNICATION: COMPONENTS, SUB-SYSTEMS, AND SYSTEMS IV, 2015, 9389
  • [37] Optical Technologies for Future Global Navigation Satellite Systems
    Schmidt, Tobias D.
    Schuldt, Thilo
    Michalak, Grzegorz
    Surof, Janis
    Poliak, Juraj
    Giorgi, Gabriele
    Braxmaier, Claus
    Meurer, Michael
    Guenther, Christoph
    2023 IEEE/ION POSITION, LOCATION AND NAVIGATION SYMPOSIUM, PLANS, 2023, : 311 - 317
  • [38] Optical interconnects - Status and future developments
    Brenner, KH
    NANOFAIR 2004 NEW IDEAS FOR INDUSTRY, 2004, 1839 : 55 - 58
  • [39] Optical Network Architectures and Technologies for Datacenters
    Wosinska, Lena
    Lin, Rui
    Cheng, Yuxin
    Chen, Jiajia
    2017 IEEE PHOTONICS SOCIETY SUMMER TOPICAL MEETING SERIES (SUM), 2017, : 111 - 112
  • [40] Network technologies for reliable undersea sensor systems - Advanced protocols, optical components and architectures improve the reliability of undersea sensor networks
    Walrod, J
    SEA TECHNOLOGY, 2006, 47 (05) : 10 - +