• DocumentCode
    1756883
  • Title

    Source-Channel Coding for Fading Channels With Correlated Interference

  • Author

    Abou Saleh, Ahmad ; Wai-Yip Chan ; Alajaji, Fady

  • Author_Institution
    Dept. of Electr. & Comput. Eng., Queen´s Univ., Kingston, ON, Canada
  • Volume
    62
  • Issue
    11
  • fYear
    2014
  • fDate
    Nov. 2014
  • Firstpage
    3997
  • Lastpage
    4011
  • Abstract
    We consider the problem of sending a Gaussian source over a fading channel with Gaussian interference known to the transmitter. We study joint source-channel coding schemes for the case of unequal bandwidth between the source and the channel and when the source and the interference are correlated. An outer bound on the system´s distortion is first derived by assuming additional information at the decoder side. We then propose layered coding schemes based on proper combination of power splitting, bandwidth splitting, Wyner-Ziv and hybrid coding. More precisely, a hybrid layer, that uses the source and the interference, is concatenated (superimposed) with a purely digital layer to achieve bandwidth expansion (reduction). The achievable (square error) distortion region of these schemes under matched and mismatched noise levels is then analyzed. Numerical results show that the proposed schemes perform close to the best derived bound and to be resilient to channel noise mismatch. As an application of the proposed schemes, we derive both inner and outer bounds on the source-channel-state distortion region for the fading channel with correlated interference; the receiver, in this case, aims to jointly estimate both the source signal as well as the channel-state (interference).
  • Keywords
    combined source-channel coding; distortion; fading channels; radiofrequency interference; Gaussian interference; Wyner-Ziv coding; bandwidth expansion; bandwidth splitting; channel noise mismatch; correlated interference; fading channels; hybrid coding; joint source-channel coding scheme; layered coding schemes; matched noise levels; mismatched noise levels; power splitting; source-channel-state distortion region; Bandwidth; Decoding; Encoding; Fading; Interference; Noise level; Tin; Joint source-channel coding; correlated interference; dirty paper coding; distortion region; fading channels; hybrid digital-analog coding;
  • fLanguage
    English
  • Journal_Title
    Communications, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0090-6778
  • Type

    jour

  • DOI
    10.1109/TCOMM.2014.2360852
  • Filename
    6913557