• DocumentCode
    865578
  • Title

    Global convergence of fractionally spaced Godard (CMA) adaptive equalizers

  • Author

    Li, Ye ; Ding, Zhi

  • Author_Institution
    Dept. of Electr. Eng., Maryland Univ., College Park, MD, USA
  • Volume
    44
  • Issue
    4
  • fYear
    1996
  • fDate
    4/1/1996 12:00:00 AM
  • Firstpage
    818
  • Lastpage
    826
  • Abstract
    The Godard (1980) or constant modulus algorithm (CMA) equalizer is perhaps the best known and the most popular scheme for blind adaptive channel equalization. Most published works on blind equalization convergence analysis are confined to T-spaced equalizers with real-valued inputs. The common belief is that analysis of fractionally spaced equalizers (FSEss) with complex inputs is a straightforward extension with similar results. This belief is, in fact, untrue. We present a convergence analysis of Godard/CMA FSEs that proves the important advantages provided by the FSE structure. We show that an FSE allows the exploitation of the channel diversity that supports two important conclusions of great practical significance: (1) a finite-length channel satisfying a length-and-zero condition allows Godard/CMA FSE to be globally convergent, and (2) the linear FSE filter length need not be longer than the channel delay spread. Computer simulation demonstrates the performance improvement provided by the adaptive Godard FSE
  • Keywords
    adaptive equalisers; convergence of numerical methods; diversity reception; filtering theory; telecommunication channels; adaptive Godard FSE; blind adaptive channel equalization; channel delay spread; channel diversity; complex inputs; computer simulation; constant modulus algorithm; convergence analysis; finite length channel; fractionally spaced Godard adaptive equalizers; global convergence; length and zero condition; linear FSE filter length; performance; Adaptive equalizers; Blind equalizers; Computer simulation; Convergence; Delay; Finite impulse response filter; Intersymbol interference; Nonlinear filters; Statistics; Transmitters;
  • fLanguage
    English
  • Journal_Title
    Signal Processing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1053-587X
  • Type

    jour

  • DOI
    10.1109/78.492535
  • Filename
    492535