• DocumentCode
    762614
  • Title

    Low-complexity iterative method of equalization for single carrier with cyclic prefix in doubly selective channels

  • Author

    Ahmed, Sajid ; Sellathurai, Mathini ; Lambotharan, Sangarapillai ; Chambers, Jonathon A.

  • Author_Institution
    Centre of Digital Signal Process., Cardiff Univ., UK
  • Volume
    13
  • Issue
    1
  • fYear
    2006
  • Firstpage
    5
  • Lastpage
    8
  • Abstract
    Orthogonal frequency division multiplexing (OFDM) requires an expensive linear amplifier at the transmitter due to its high peak-to-average power ratio (PAPR). Single carrier with cyclic prefix (SC-CP) is a closely related transmission scheme that possesses most of the benefits of OFDM but does not have the PAPR problem. Although in a multipath environment, SC-CP is very robust to frequency-selective fading, it is sensitive to the time-selective fading characteristics of the wireless channel that disturbs the orthogonality of the channel matrix (CM) and increases the computational complexity of the receiver. In this paper, we propose a time-domain low-complexity iterative algorithm to compensate for the effects of time selectivity of the channel that exploits the sparsity present in the channel convolution matrix. Simulation results show the superior performance of the proposed algorithm over the standard linear minimum mean-square error (L-MMSE) equalizer for SC-CP.
  • Keywords
    OFDM modulation; computational complexity; convolution; equalisers; fading channels; iterative methods; least mean squares methods; matrix algebra; multipath channels; time-domain analysis; L-MMSE equalizer; OFDM; SC-CP; channel convolution matrix; computational complexity; doubly selective channel; linear amplifier; linear minimum mean-square error; multipath environment; orthogonal frequency division multiplexing; single carrier-cyclic prefix; time-domain iterative algorithm; time-selective fading characteristic; transmitter; wireless channel; Computational complexity; Fading; High power amplifiers; Iterative algorithms; Iterative methods; OFDM; Peak to average power ratio; Robustness; Transmitters; Wireless sensor networks; Computational complexity; doubly selective channel; iterative equalization;
  • fLanguage
    English
  • Journal_Title
    Signal Processing Letters, IEEE
  • Publisher
    ieee
  • ISSN
    1070-9908
  • Type

    jour

  • DOI
    10.1109/LSP.2005.860552
  • Filename
    1561198