• DocumentCode
    1739457
  • Title

    Decision-feedback differential demodulation of bit-interleaved coded MDPSK for flat Rayleigh fading channels

  • Author

    Lampe, Lutz H J ; Schober, Robert

  • Author_Institution
    Lab. fur Nachrichtentech., Erlangen-Nurnberg Univ., Germany
  • Volume
    2
  • fYear
    2000
  • fDate
    2000
  • Firstpage
    965
  • Abstract
    A novel simple receiver structure for M-ary differential phase-shift keying (MDPSK) transmission over flat Rayleigh fading channels without channel state information is proposed. We apply convolutional codes for error correction and bit-interleaving as appropriate means to combat the effects of fading. In the decoding the hard decisions of the Viterbi algorithm are fed back to enable a more reliable estimation of the current channel state. A theoretical analysis of the associated cutoff rate for error-free feedback shows remarkable gains in power efficiency compared to conventional differential demodulation, while the computational complexity of the decoding remains low. The results from information theory are in good agreement with the obtained simulation results. The proposed scheme works remarkably well for target bit error rates which are usually of interest
  • Keywords
    Rayleigh channels; Viterbi decoding; computational complexity; convolutional codes; demodulation; differential phase shift keying; error statistics; feedback; interleaved codes; iterative decoding; modulation coding; parameter estimation; BER; M-ary differential phase-shift keying; MDPSK transmission; Viterbi algorithm; bit error rates; bit-interleaved coded MDPSK; channel state estimation; computational complexity; convolutional codes; cutoff rate; decision-feedback differential demodulation; error correction; error-free feedback; flat Rayleigh fading channels; hard decision decoding; information theory; power efficiency; receiver structure; simulation results; Channel state information; Convolutional codes; Decoding; Demodulation; Differential phase shift keying; Error correction codes; Fading; Forward error correction; Rayleigh channels; Viterbi algorithm;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Global Telecommunications Conference, 2000. GLOBECOM '00. IEEE
  • Conference_Location
    San Francisco, CA
  • Print_ISBN
    0-7803-6451-1
  • Type

    conf

  • DOI
    10.1109/GLOCOM.2000.891281
  • Filename
    891281