• DocumentCode
    1128506
  • Title

    Joint Channel Estimation and Symbol Detection for Orthogonal Space-Time Block-Coding Systems in Frequency-Selective Channels

  • Author

    Ding, Zhiguo ; Ward, Darren B. ; Nabar, Rohit U.

  • Author_Institution
    Imperial Coll. London, London
  • Volume
    56
  • Issue
    5
  • fYear
    2007
  • Firstpage
    2475
  • Lastpage
    2486
  • Abstract
    Orthogonal space-time block coding (OSTBC) in multiple-antenna wireless systems has recently emerged as one of the most promising reliability-enhancing technologies for high-speed, high-quality data services. In this paper, we propose a technique to achieve joint channel estimation and symbol detection for OSTBC in frequency-selective fading channels. The key observation is that a multiple-input-single-output system, which is using OSTBC, can be transformed into an equivalent single-input-multiple-output system using the implicit redundancy in OSTBC. This allows a probabilistic method, known as the Baum-Welch algorithm, to be applied at each output branch. As each output branch is a function of the same input, redundant information may be exchanged between the multiple branches to improve detection performance. The proposed technique does not require multiple antennas at the receiver and only has moderate computational complexity. Furthermore, the Cramer-Rao lower bound (CRB) is also developed to facilitate performance analysis. Simulation results are provided to demonstrate the performance of the proposed algorithm.
  • Keywords
    block codes; channel estimation; fading channels; orthogonal codes; signal detection; space-time codes; telecommunication network reliability; Baum-Welch algorithm; Cramer-Rao lower bound; frequency-selective fading channels; high-quality data services; high-speed data services; implicit redundancy; improved detection performance; joint channel estimation; multiple-antenna wireless systems; multiple-input-single-output system; orthogonal space-time block-coding; performance analysis; probabilistic method; reliability-enhancing technologies; single-input-multiple-output system; symbol detection; Block codes; Channel estimation; Computational complexity; Computational modeling; Frequency estimation; Frequency-selective fading channels; Performance analysis; Receiving antennas; Redundancy; Space technology; Channel estimation; Cramer–Rao lower bound (CRB); iterative receivers; orthogonal space-time block coding (OSTBC); symbol detection;
  • fLanguage
    English
  • Journal_Title
    Vehicular Technology, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9545
  • Type

    jour

  • DOI
    10.1109/TVT.2007.899942
  • Filename
    4305495