• DocumentCode
    148609
  • Title

    Error exponents analysis for dual-hop η-μ fading channel with amplify-and-forward relaying

  • Author

    Jiang Xue ; Yunhan Zhang ; Sarkar, M.Z.I. ; Ratnarajah, Tharm

  • Author_Institution
    IDCoM, Univ. of Edinburgh, Edinburgh, UK
  • fYear
    2014
  • fDate
    6-9 April 2014
  • Firstpage
    1105
  • Lastpage
    1109
  • Abstract
    In this paper, we investigate the error exponents of dual-hop amplify-and-forward (AF) system for η-μ fading channel. Channel capacity of a wireless communication system gives only the knowledge of maximum achievable rate. Therefore, it is necessary to analyse the decoding complexity of the code that achieves a certain level of reliable communication. In fact, a measure of reliability called error exponent exists which sets ultimate bounds on the performance of communication systems employing codes of finite complexity. Assuming the receiver has full channel state information (CSI) and the transmitter has no CSI, we derive the novel exact expressions of Random coding error exponent (RCEE) and expurgated error exponent which provide insight into an elementary tradeoff between the communication reliability and information rate. Moreover, the necessary codeword length can be computed easily without the extensive Monte-Carlo simulation to achieve predefined error probability at a given rate. Meanwhile, simplified approximate expressions in the high signal-to-noise ratio (SNR) regime are also obtained. In addition, we derive the exact closed-form expressions for the ergodic capacity and cutoff rate.
  • Keywords
    Monte Carlo methods; amplify and forward communication; channel capacity; decoding; fading channels; relay networks (telecommunication); telecommunication network reliability; amplify-and-forward relaying; channel capacity; codeword length; communication reliability; cutoff rate; decoding complexity; dual-hop η-μ fading channel; dual-hop amplify-and-forward system; ergodic capacity; error exponents analysis; error probability; extensive Monte-Carlo simulation; full channel state information; information rate; random coding error exponent; reliable communication; signal-to-noise ratio regime; wireless communication system; Complexity theory; Encoding; Error probability; Fading; Relays; Signal to noise ratio; Wireless communication; η-μ fading; Cutoff rate; expurgated error exponent; random coding error exponent;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Wireless Communications and Networking Conference (WCNC), 2014 IEEE
  • Conference_Location
    Istanbul
  • Type

    conf

  • DOI
    10.1109/WCNC.2014.6952283
  • Filename
    6952283