• DocumentCode
    56032
  • Title

    Wireless Multicast Relay Networks with Limited-Rate Source-Conferencing

  • Author

    Jinfeng Du ; Ming Xiao ; Skoglund, Mikael ; Medard, Muriel

  • Author_Institution
    ACCESS Linnaeus Center, R. Inst. of Technol., Stockholm, Sweden
  • Volume
    31
  • Issue
    8
  • fYear
    2013
  • fDate
    Aug-13
  • Firstpage
    1390
  • Lastpage
    1401
  • Abstract
    We investigate capacity bounds for a wireless multicast relay network where two sources simultaneously multicast to two destinations with the help of a full-duplex relay node. The two sources and the relay use the same channel resources (i.e. co-channel transmission). We assume Gaussian channels with time-invariant channel gains which are known by all nodes. The two source nodes are connected by orthogonal limited-rate error-free conferencing links. By extending the proof of the converse for the Gaussian relay channel and introducing two lemmas on conditional (co-)variance, we present two genie-aided outer bounds of the capacity region for this multicast relay network. We extend noisy network coding to use source cooperation with the help of the theory of network equivalence. We also propose a new coding scheme, partial-decode-and-forward based linear network coding, which is essentially a hybrid scheme utilizing rate-splitting and messages conferencing at the source nodes, partial decoding and linear network coding at the relay, and joint decoding at each destination. A low-complexity alternative scheme, analog network coding based on amplify-and-forward relaying, is also investigated and shown to benefit greatly from the help of the conferencing links and can even outperform noisy network coding when the coherent combining gain is dominant.
  • Keywords
    Gaussian channels; amplify and forward communication; decode and forward communication; linear codes; network coding; relay networks (telecommunication); Gaussian relay channel; amplify-and-forward relaying; analog network coding; capacity bounds; capacity region; channel resource; coherent combining gain; full-duplex relay node; genie-aided outer bounds; limited-rate source-conferencing; low-complexity alternative scheme; message conferencing; network equivalence theory; noisy network coding; orthogonal limited-rate error-free conferencing links; partial decode-and-forward-based linear network coding; rate-splitting; source cooperation; source node; time-invariant channel gain; wireless multicast relay networks; Decoding; Encoding; Joints; Network coding; Noise measurement; Relays; Wireless communication; Relays; cooperative communication; network coding; source cooperation; wireless multicast;
  • fLanguage
    English
  • Journal_Title
    Selected Areas in Communications, IEEE Journal on
  • Publisher
    ieee
  • ISSN
    0733-8716
  • Type

    jour

  • DOI
    10.1109/JSAC.2013.130804
  • Filename
    6330083