• DocumentCode
    79927
  • Title

    Performance Analysis of Dual-Hop AF Relaying Systems over Mixed \\eta{-}\\mu and \\kappa {-} \\mu

  • Author

    Peppas, Kostas P. ; Alexandropoulos, George C. ; Mathiopoulos, P. Takis

  • Author_Institution
    Inst. of Inf. & Telecommun., Nat. Centre for Sci. Res.-Demokritos, Agia Paraskevi, Greece
  • Volume
    62
  • Issue
    7
  • fYear
    2013
  • fDate
    Sept. 2013
  • Firstpage
    3149
  • Lastpage
    3163
  • Abstract
    This paper investigates the end-to-end performance of a dual-hop amplify-and-forward (AF) relaying communication system where the source-to-relay and the relay-to-destination channels are subject to different fading conditions. The relay is assumed to either possess perfect channel state information (CSI) or have a fixed gain. We consider the case where the one hop´s channel is subject to η - μ fading, whereas the other hop´s channel is subject to κ- μ fading. This mixed fading propagation channel is capable of accurately modeling various practical dual-hop transmissions. Examples of such environments are encountered in micro-/macrocellular systems and/or hybrid satellite/terrestrial wireless communication systems, where typically, only the one hop´s channel has a line-of-sight (LOS) component. For both CSI-assisted and fixed-gain relaying and for integer-valued fading parameters, exact analytical expressions in the form of rapidly convergent infinite series for the outage probability (OP) and average bit error probability (ABEP) of several modulation schemes are derived. Moreover, for CSI-assisted relaying and arbitrary-valued fading parameters, closed-form lower bounds [tight for high values of the signal-to-noise ratio (SNR)] for the OP and ABEP performance are obtained. The analysis is also substantiated by obtaining previously published equivalent performance expressions as special cases of our generic fading models, namely, those available for Nakagami- m and Rice fading channels. In addition, the derived analytical expressions have been numerically evaluated, and the performance evaluation results have been further validated by comparing them with equivalent results that have been obtained by means of Monte Carlo computer simulations.
  • Keywords
    Monte Carlo methods; Nakagami channels; amplify and forward communication; error statistics; fading channels; relay networks (telecommunication); wireless channels; κ- μ fading channels; ABEP; AF relaying communication system; CSI; LOS component; Monte Carlo computer simulations; Nakagami- m channels; OP; Rice fading channels; SNR; average bit error probability; channel state information; dual hop AF relaying systems; dual hop amplify-and-forward; dual hop transmissions; integer-valued fading parameters; line-of-sight component; macrocellular systems; microcellular systems; mixed η-μ channels; outage probability; performance analysis; relay-to-destination channels; satellite-terrestrial wireless communication systems; signal-to-noise ratio; source-to-relay channels; Approximation methods; Modulation; Performance analysis; Rayleigh channels; Relays; Signal to noise ratio; $eta$$mu$ distribution; $kappa$$mu$ distribution; Dual-hop systems; error rate performance; fading channels; generalized Marcum-$Q$ function; outage probability (OP); relay communications;
  • fLanguage
    English
  • Journal_Title
    Vehicular Technology, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9545
  • Type

    jour

  • DOI
    10.1109/TVT.2013.2251026
  • Filename
    6473919