Hybrid NOMA and ZF Pre-Coding Transmission for Multi-Cell VLC Networks

被引:19
|
作者
Eltokhey, Mahmoud Wafik [1 ]
Khalighi, Mohammad Ali [1 ]
Ghazy, Abdallah S. [2 ]
Hranilovic, Steve [2 ]
机构
[1] Aix Marseille Univ, Inst Fresnel, Cent Marseille, CNRS, Marseille, France
[2] McMaster Univ, Dept Elect & Comp Engn, Hamilton, ON L8S 4K1, Canada
关键词
Visible light communications; multi-user networks; non-orthogonal multiple access; pre-coding; NONORTHOGONAL MULTIPLE-ACCESS; VISIBLE-LIGHT COMMUNICATIONS; POWER ALLOCATION; PERFORMANCE; SYSTEMS; MAXIMIZATION; REDUCTION; DESIGN;
D O I
10.1109/OJCOMS.2020.2986874
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
Though visible-light communication (VLC) channels are contained by opaque boundaries, they present unique challenges in the development of multi-user/multi-cell scenarios. In this paper, two hybrid transmission schemes are proposed for managing multiple users in multi-cell VLC networks. The proposed schemes are based on using non-orthogonal multiple access (NOMA) in the network access points (APs), while applying zero-forcing (ZF) pre-coding to the cell edge users' signals, which are cooperatively broadcast from the APs. The proposed approach allows a reduction of the inter-cell interference affecting the cell-edge users thanks to ZF pre-coding, while dealing with inter-user interference for cell-center users via NOMA signaling. Considering different transmission scenarios, we show the improvement in the network total achievable data rate as well as fairness, as compared to conventional NOMA. For example, for a typical scenario considered, an improvement of up to 39% in total achievable rate and up to 112% in the network fairness is achieved. The proposed approach also presents a clear advantage over the conventional ZF pre-coding, for which the maximum number of users is constrained to the number of APs.
引用
收藏
页码:513 / 526
页数:14
相关论文
共 50 条
  • [1] Joint NOMA Transmission in Indoor Multi-cell VLC Networks
    Rajput, Virendra Singh
    Ashok, D. R.
    Chockalingam, A.
    2019 IEEE 30TH ANNUAL INTERNATIONAL SYMPOSIUM ON PERSONAL, INDOOR AND MOBILE RADIO COMMUNICATIONS (PIMRC), 2019, : 1467 - 1472
  • [2] Multi-cell cooperative transmission for MU-NOMA networks
    Xie, Shaoguo
    Huang, Xiaoxiao
    WIRELESS NETWORKS, 2025, 31 (03) : 2457 - 2475
  • [3] A Pre-coding Scheme for Minimizing the Average BER Applicable to Cooperative Multi-cell System
    Wu Jia
    Su Xin
    Gao Hui
    Zhang Zhang
    INFORMATION TECHNOLOGY FOR MANUFACTURING SYSTEMS II, PTS 1-3, 2011, 58-60 : 2237 - 2244
  • [4] Improving Throughput by Multi-cell Coordinated Vertical Plane Beam Control with Pre-coding
    Hoshino, Kenji
    Fujii, Teruya
    2012 IEEE 75TH VEHICULAR TECHNOLOGY CONFERENCE (VTC SPRING), 2012,
  • [5] Dimming-Aware Interference Mitigation for NOMA-Based Multi-Cell VLC Networks
    Eltokhey, Mahmoud Wafik
    Khalighi, Mohammad-Ali
    Ghassemlooy, Zabih
    IEEE COMMUNICATIONS LETTERS, 2020, 24 (11) : 2541 - 2545
  • [6] Hybrid NOMA in Multi-Cell Networks: From a Centralized Analysis to Practical Schemes
    Hussein, Abdalla
    Rosenberg, Catherine
    Mitran, Patrick
    IEEE-ACM TRANSACTIONS ON NETWORKING, 2022, 30 (03) : 1268 - 1282
  • [7] QoE-based Resource Allocation for Multi-cell Hybrid NOMA Networks
    Shao, Hongxiang
    Sun, Youming
    Cai, Jihao
    Dianzi Yu Xinxi Xuebao/Journal of Electronics and Information Technology, 2021, 43 (04): : 1129 - 1136
  • [8] QoE-based Resource Allocation for Multi-cell Hybrid NOMA Networks
    Shao Hongxiang
    Sun Youming
    Cai Jihao
    JOURNAL OF ELECTRONICS & INFORMATION TECHNOLOGY, 2021, 43 (04) : 1129 - 1136
  • [9] On the Performance of Downlink NOMA in Multi-Cell mmWave Networks
    Sun, Yanshi
    Ding, Zhiguo
    Dai, Xuchu
    IEEE COMMUNICATIONS LETTERS, 2018, 22 (11) : 2366 - 2369
  • [10] Joint NOMA for Improved SER of Cell-Edge Users in Multi-Cell Indoor VLC
    Uday, T.
    Kumar, Abhinav
    Natarajan, L.
    IEEE WIRELESS COMMUNICATIONS LETTERS, 2022, 11 (01) : 13 - 17