• Journal of Terahertz Science and Electronic Information Technology
  • Vol. 20, Issue 11, 1168 (2022)
CAO Xuemin*, YUE Dianwu, GUAN Wei, and AI Zhijie
Author Affiliations
  • [in Chinese]
  • show less
    DOI: 10.11805/tkyda2020340 Cite this Article
    CAO Xuemin, YUE Dianwu, GUAN Wei, AI Zhijie. Performance analysis of intelligent reflecting surface assisted millimeter wave communications[J]. Journal of Terahertz Science and Electronic Information Technology , 2022, 20(11): 1168 Copy Citation Text show less
    References

    [1] RAPPAPORT T S, MURDOCK J N, GUTIERREZ F. State of the art in 60 GHz integrated circuits and systems for wireless communications[J]. Proceedings of the IEEE, 2011,99(8):1390-1436.

    [2] RAPPAPORT T S, SUN S, MAYZUS R, et al. Millimeter wave mobile communications for 5G cellular: it will work[J]. IEEEAccess, 2013(1):335-349.

    [3] PI Z,KHAN F. An introduction to millimeter-wave mobile broadband systems[J]. IEEE Communications Magazine, 2011,49(6):101-107.

    [4] SWINDLEHURST A L, AYANOGLU E, HEYDARI P, et al. Millimeter-wave massive MIMO: the next wireless revolution? [J].IEEE Communications Magazine, 2014,52(9):56-62.

    [5] ABARI O,BHARADIA D,DUFFIELD A,et al. Enabling high-quality untethered virtual reality[C]// 14th USENIX Symposium on Networked Systems Design and Implementation(NSDI 17). Boston,MA,USA:USENIX Association, 2017:531-544.

    [6] YANG G,DU J,XIAO M. Maximum throughput path selection with random blockage for indoor 60 GHz relay networks[J]. IEEE Transactions on Communications, 2015,63(10):3511-3524.

    [7] NIU Y,DING W,WU H,et al. Relay-assisted and qos aware scheduling to overcome blockage in mmwave backhaul networks[J].IEEE Transactions on Vehicular Technology, 2018,68(2):1733-1744.

    [8] LIASKOS C,NIE S,TSIOLIARIDOU A,et al. A new wireless communication paradigm through software-controlled meta surfaces[J]. IEEE Communications Magazine, 2018,56(9):162-169.

    [9] TAN X,SUN Z,KOUTSONIKOLAS D,et al. Enabling indoor mobile millimeter-wave networks based on smart reflect-arrays[C]//IEEE Conference on Computer Communications. Honolulu,HI,USA:IEEE, 2018:270-278.

    [10] HUANG C,ZAPPONE A,ALEXANDROPOULOS G C,et al. Reconfigurable intelligent surfaces for energy efficiency in wireless communication[J]. IEEE Transactions on Wireless Communications, 2019,18(8):4157-4170.

    [11] PEROVI? N S, DI RENZO M, FLANAGAN M F. Channel capacity optimization using reconfigurable intelligent surfaces in indoor mmwave environments[C/OL]// IEEE International Conference on Communications(ICC). Dublin, Ireland: IEEE, 2020.https://arxiv.org/abs/1910.14310.

    [12] WU Q,ZHANG R. Beamforming optimization for intelligent reflecting surface with discrete phase shifts[C]// IEEE International Conference on Acoustics, Speech and Signal Processing. Brighton,UK:IEEE, 2019:7830-7833.

    [13] WANG Peilan, FANG Jun, YUAN Xiaojun, et al. Intelligent reflecting surface-assisted millimeter wave communications: joint active and passive precoding design[J]. IEEE Transactions on Vehicular Technology, 2020,69(12):14960-14973.

    [14] BJ?RNSON E,?ZDOGAN ?,LARSSON E G. Intelligent reflecting surface versus decode-and-forward: how large surfaces are needed to beat relaying[J]. IEEE Wireless Communications Letters, 2019,9(2):244-248.

    [15] BUZZI Stefano,D'ANDREA Carmen. On clustered statistical MIMO millimeter wave channel simulation[R/OL]. arXiv, 2016:1-4. (2016-5-11)[2020-07-16]. https://arxiv.org/abs/1604.00648.

    [16] LANEMAN J N,TSE D N C,WORNELL G W. Cooperative diversity in wireless networks:efficient protocols and outage behavior[J]. IEEE Transactions on Information Theory, 2004,50(12):3062-3080.

    [17] SIMON M K,ALOUINI M S. Digital communication over fading channels[M]. 2nd ed. John Wiley & Sons, Inc., 2005:100-110.

    [19] ZHOU S, XU W, ZHANG H, et al. Hybrid precoding for millimeter wave massive MIMO with analog combining[C]// The 9th International Conference on Wireless Communications and Signal Processing(WCSP). Nanjing,China:IEEE, 2017:1-5.

    [20] LI J,YUE D,SUN Y. Performance analysis of millimeter wave massive MIMO systems in centralized and distributed schemes[J].IEEE Access, 2018(6):75482-75494.

    [21] RAPPAPORT T S,MACCARTNEY G R,SAMIMI M K,et al. Wideband millimeter-wave propagation measurements and channel models for future wireless communication system design[J]. IEEE Transactions on Communications, 2015,63(9):3029-3056.

    CAO Xuemin, YUE Dianwu, GUAN Wei, AI Zhijie. Performance analysis of intelligent reflecting surface assisted millimeter wave communications[J]. Journal of Terahertz Science and Electronic Information Technology , 2022, 20(11): 1168
    Download Citation