• DocumentCode
    20355
  • Title

    Space–Time Coded Spatial Modulated Physical Layer Network Coding for Two-Way Relaying

  • Author

    Unnikrishnan, K.G. ; Rajan, B. Sundar

  • Author_Institution
    Dept. of Electr. Commun. Eng., Indian Inst. of Sci., Bangalore, India
  • Volume
    14
  • Issue
    1
  • fYear
    2015
  • fDate
    Jan. 2015
  • Firstpage
    331
  • Lastpage
    342
  • Abstract
    Using the spatial modulation approach, where only one transmit antenna is active at a time, we propose two transmission schemes for two-way relay channel using physical layer network coding with space time coding using coordinate interleaved orthogonal designs (CIODs). It is shown that using two uncorrelated transmit antennas at the nodes, but using only one RF transmit chain and space-time coding across these antennas can give a better performance without using any extra resources and without increasing the hardware implementation cost and complexity. In the first transmission scheme, two antennas are used only at the relay, adaptive network coding (ANC) is employed at the relay and the relay transmits a CIOD space time block code (STBC). This gives a better performance compared to an existing ANC scheme for two-way relay channel which uses one antenna each at all the three nodes. It is shown that for this scheme at high SNR the average end-to-end symbol error probability (SEP) is upper bounded by twice the SEP of a point-to-point fading channel. In the second transmission scheme, two transmit antennas are used at all the three nodes, CIOD STBCs are transmitted in multiple access and broadcast phases. This scheme provides a diversity order of two for the average end-to-end SEP with an increased decoding complexity of O(M3) for an arbitrary signal set and O(M2√M) for square QAM signal set. Simulation results show that the proposed schemes performs better than the existing ANC schemes under perfect and imperfect channel state information.
  • Keywords
    adaptive codes; channel coding; decoding; error statistics; fading channels; interleaved codes; multi-access systems; network coding; orthogonal codes; relay networks (telecommunication); space-time block codes; transmitting antennas; ANC scheme; CIODs; RF transmit chain; STBC; adaptive network coding; average end-to-end SEP; average end-to-end symbol error probability; broadcast phases; coordinate interleaved orthogonal designs; decoding complexity; diversity order; hardware implementation cost; imperfect channel state information; multiple access; perfect channel state information; point-to-point fading channel; space time block code; space-time coded spatial modulated physical layer network coding; square QAM signal set; transmit antenna; two-way relay channel; uncorrelated transmit antennas; upper bound; Complexity theory; Encoding; Network coding; Radio frequency; Relays; Transmitting antennas; Coordinate interleaved orthogonal designs; denoise-and-forward; physical layer network coding; spatial modulation; wireless two-way relaying;
  • fLanguage
    English
  • Journal_Title
    Wireless Communications, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1536-1276
  • Type

    jour

  • DOI
    10.1109/TWC.2014.2346491
  • Filename
    6874565