• DocumentCode
    1590883
  • Title

    Analysis of convolutional code performance in generalized fading channels

  • Author

    Klein, Oliver ; Held, Ingolf

  • Author_Institution
    R&D Radio Commun., Ericsson Eurolab, Nuremberg, Germany
  • Volume
    4
  • fYear
    2003
  • Firstpage
    2329
  • Abstract
    An elegant method for analytical evaluation of the bit error probability in multipath fading channels is presented. Even though that method can be applied for more general problems, we restrict ourselves on the investigation of convolutionally coded user data transmission in UMTS FDD and cdma2OOO systems, i.e. the data is channel encoded by a rate 1/2 or rate 1/3 256-state maximum free distance convolutional code and a rate 1/4 or rate 1/6 256-state optimum distance spectrum code, respectively. We generalize the well-known analytical expression for the pairwise error probability of a single path Rayleigh channel to the case of a generalized multipath fading channel, where the individual paths are not necessarily identically distributed. The error probability can be tightly bounded (union bound) in a closed form expression by use of a sum over the code´s information error weight distribution and an integral over a finite interval which is easily evaluated numerically. We present some examples that show the behavior of the error probability in AWGN as well as in single and multipath Nakagami-m fading channels.
  • Keywords
    3G mobile communication; AWGN channels; Rayleigh channels; channel coding; code division multiple access; convolutional codes; data communication; error statistics; frequency division multiplexing; multipath channels; probability; Rayleigh channel; Universal Mobile Telecommunciations System; additive white Gaussian noise; bit error probability; cdma2OOO systems; channel encoding; code division multiple access; convolutional code; data transmission; generalized fading channels; multipath fading channels; pairwise error probability; rake receivers; 3G mobile communication; AWGN; Convolutional codes; Data communication; Error probability; Fading; Integral equations; Pairwise error probability; Performance analysis; Rayleigh channels;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Vehicular Technology Conference, 2003. VTC 2003-Spring. The 57th IEEE Semiannual
  • ISSN
    1090-3038
  • Print_ISBN
    0-7803-7757-5
  • Type

    conf

  • DOI
    10.1109/VETECS.2003.1208805
  • Filename
    1208805