• DocumentCode
    2109855
  • Title

    A hybrid TIM-NOMA scheme for the SISO Broadcast Channel

  • Author

    Kalokidou, Vaia ; Johnson, Oliver ; Piechocki, Robert

  • Author_Institution
    Communication Systems and Networks Research Group, MVB, School of Engineering, University of Bristol, UK
  • fYear
    2015
  • fDate
    8-12 June 2015
  • Firstpage
    387
  • Lastpage
    392
  • Abstract
    Future mobile communication networks will require enhanced network efficiency and reduced system overhead due to their user density and high data rate demanding applications of the mobile devices. Research on Blind Interference Alignment (BIA) and Topological Interference Management (TIM) has shown that optimal Degrees of Freedom (DoF) can be achieved, in the absence of Channel State Information (CSI) at the transmitters, reducing the network´s overhead. Moreover, the recently emerged Non-Orthogonal Multiple Access (NOMA) scheme suggests a different multiple access approach, compared to the current orthogonal methods employed in 4G networks, resulting in high capacity gains. Our contribution is a hybrid TIM-NOMA scheme in Single-Input-Single-Output (SISO) K- user cells, in which users are divided into T groups, and 1/T DoF is achieved for each user. By superimposing users in the power domain, we introduce a two-stage decoding process, managing “inter-group” interference based on the TIM principles, and “intra-group” interference based on Successful Interference Cancellation (SIC), as proposed by NOMA. We show that for high SNR values the hybrid scheme can improve the sum rate by at least 100% when compared to Time Division Multiple Access (TDMA).
  • Keywords
    Decoding; Interference; Noise; Receivers; Silicon carbide; Time division multiple access; Transmitters;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Communication Workshop (ICCW), 2015 IEEE International Conference on
  • Conference_Location
    London, United Kingdom
  • Type

    conf

  • DOI
    10.1109/ICCW.2015.7247210
  • Filename
    7247210