• Journal of Terahertz Science and Electronic Information Technology
  • Vol. 20, Issue 8, 762 (2022)
HUANGGaoyong*, ZHENGTian, and FANG Xuming
Author Affiliations
  • [in Chinese]
  • show less
    DOI: 10.11805/tkyda2021355 Cite this Article
    HUANGGaoyong, ZHENGTian, FANG Xuming. Optimal adaptive beamforming and joint transmission for millimeter wave under high-speed railway[J]. Journal of Terahertz Science and Electronic Information Technology , 2022, 20(8): 762 Copy Citation Text show less
    References

    [1] AI Bo, GUAN Ke, Markus Rupp, et al. Future railway services-oriented mobile communications network[J]. IEEE Communications Magazine, 2015,53(10):78-85.

    [2] ANDREWS J G,BUZZI S,CHOI Wan,et al. What 5G will be?[J]. IEEE JSAC, 2014,32(6):1065-1082.

    [3] ZHANG Lin, XIAO Ming, WU Gang, et al. A survey of advanced techniques for spectrum sharing in 5G networks[J]. IEEE Wireless Communications, 2017,24(5):44-51.

    [4] SAMSUNG. Email discussion summary for [101-e][320] NR_HST_FR2_Scenario[C/OL]// 3GPP TSG-RAN WG4 Meeting # 101-e. [s.n.], 2021. [2021-12-12]. https://www.3gpp.org/ftp/tsg_ran/wg4_radio/tsgr4_101-e/inbox/drafts/%5B101-e%5D%5B320%5D%20nr_hst_fr2_ scenario/round%201/Summary_320_1stRound_v04_QC_Nokia2.docx.

    [5] FAN Pingzhi, ZHAO Jing, CHIH-LIN I. 5G high mobility wireless communications: challenges and solutions[J]. China Communications, 2016,13(2):1-13.

    [6] YAN Li,FANG Xuming,FANG Yuguang. Stable beamforming with low overhead for C/U-plane decoupled HSR wireless networks[J]. IEEE Transactions on Vehicular Technology, 2018,67(7):6075-6086.

    [8] LUO Wantuan,FANG Xuming,CHENG Meng,et al. Efficient Multiple-Group Multiple-Antenna(MGMA) scheme for high-speed railway viaducts[J]. IEEE Transactions on Vehicular Technology, 2013,62(6):2558-2569.

    [9] CHENG Meng, YANG Shaoshi, FANG Xuming. Adaptive antenna-activation based beamforming for large-scale MIMO communication systems of high speed railway[J]. China Communications, 2016,13(9):12-23.

    [11] CUI Yaping, FANG Xuming. A massive MIMO-based adaptive multi-stream beamforming scheme for high-speed railway[J]. Eurasip Journal on Wireless Communication and Network, 2015(1):1-8.

    [12] CUI Yaping,FANG Xuming,FANG Yuguang,et al. Optimal nonuniform steady mmwave beamforming for high-speed railway[J]. IEEE Transactions on Vehicular Technology, 2018,67(5):4350-4358.

    [13] LI Wenyu,ZHANG Chao,DUAN Xiaoyu,et al. Performance evaluation and analysis on group mobility of mobile relay for LTE advanced system[C]// IEEE Vehicular Technology Conference (VTC Fall). Quebec City,QC,Canada:IEEE, 2012:1-5.

    [14] YUE Dianwu,ZHANG Yan,JIA Yanan. Beamforming based on specular component for massive MIMO systems in Ricean fading [J]. IEEE Wireless Communications Letters, 2015,4(2):197-200.

    [15] YOO T, GOLDSMITH A. On the optimality of multiantenna broadcast scheduling using zero-forcing beamforming[J]. IEEE Journal on Selected Areas in Communications, 2006,24(3):528-541.

    [16] HUANG Shengchun,YIN Hao,LI Haoming,et al. Decremental user selection for large-scale multi-user MIMO downlink with zero-forcing beamforming[J]. IEEE Wireless Communications Letters, 2012,1(5):480-483.

    HUANGGaoyong, ZHENGTian, FANG Xuming. Optimal adaptive beamforming and joint transmission for millimeter wave under high-speed railway[J]. Journal of Terahertz Science and Electronic Information Technology , 2022, 20(8): 762
    Download Citation