• DocumentCode
    1468625
  • Title

    Blind adaptive multiple-input decision-feedback equalizer with a self-optimized configuration

  • Author

    Labat, Joel ; Laot, Christophe

  • Author_Institution
    ENST Bretagne, Brest, France
  • Volume
    49
  • Issue
    4
  • fYear
    2001
  • fDate
    4/1/2001 12:00:00 AM
  • Firstpage
    646
  • Lastpage
    654
  • Abstract
    This paper introduces a novel blind adaptive multiple-input decision-feedback equalizer (MI-DFE) which is basically characterized by its ability to self-optimize its configuration, in terms of both structure and criteria, according to the severity of the transmission medium. In the first running mode, the novel equalizer is recursive, linear and “blindly” adapted by criteria leading to a solution closely related to the minimum MSE solution. In the second running mode, it becomes the conventional MI-DFE. From the viewpoints of both robustness and spectral efficiency, this equalizer proves to be very attractive since it avoids pathological behaviors, often encountered with the conventional trained MI-DFE, while requiring no training sequence. Furthermore, its very high speed of convergence renders it competitive in various standard applications, even in the case of burst mode transmission systems. Finally, the novel blind MI-DFE has been successfully tested on underwater acoustic communications signals, in a very severe context. The results are clearly convincing
  • Keywords
    adaptive equalisers; blind equalisers; convergence of numerical methods; decision feedback equalisers; least mean squares methods; underwater acoustic communication; blind adaptive multiple-input DFE; burst mode transmission systems; convergence speed; decision-feedback equalizer; linear equalizer; minimum MSE solution; recursive equalizer; robustness; self-optimized configuration; spectral efficiency; transmission medium; underwater acoustic communications signals; Acoustic testing; Blind equalizers; Context; Convergence; Decision feedback equalizers; Frequency diversity; Pathology; Robustness; Underwater acoustics; Underwater communication;
  • fLanguage
    English
  • Journal_Title
    Communications, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0090-6778
  • Type

    jour

  • DOI
    10.1109/26.917771
  • Filename
    917771