• DocumentCode
    2611875
  • Title

    Adaptive blind equalization technique to enhance the Constant Modulus Algorithm performance

  • Author

    Nassar, Amin Mohamed ; El Nahal, W.

  • Author_Institution
    Electron. & Commun. Dept., Cairo Univ., Cairo, Egypt
  • fYear
    2010
  • fDate
    27-28 Dec. 2010
  • Firstpage
    146
  • Lastpage
    151
  • Abstract
    Recently blind equalizers have a wide range of research interest since they do not require training sequence and extra bandwidth, but the main weaknesses of these approaches are their high computational complexity and slow adaptation, so different algorithms are presented to avoid this nature. This paper introduces a new blind equalization technique, the Exponentially Weighted Step-size Recursive Least Squares Constant Modulus Algorithm (EXP-RLS-CMA), based upon the combination between the Exponentially Weighted Step-size Recursive Least Squares (EXP-RLS) algorithm and the Constant Modulus Algorithm (CMA), by providing several assumptions to obtain faster convergence rate to an optimal delay where the Mean Squared Error (MSE) is minimum, and so this selected algorithm can be implemented in digital system to improve the receiver performance. Simulations are presented to show the excellence of this technique, and the main parameters of concern to evaluate the performance are, the rate of convergence, the mean square error (MSE), and the average error versus different signal-to-noise ratios.
  • Keywords
    adaptive equalisers; blind equalisers; least squares approximations; mean square error methods; EXP-RLS-CMA; adaptive blind equalization technique; constant modulus algorithm performance; exponentially weighted step-size recursive least squares; mean squared error; Adaptive arrays; Blind equalizers; Blind Equalization; Channel Equalization; Constant Modulus Algorithm (CMA); Exponentially Weighted Step-size Recursive Least Squares (EXP-RLS) algorithm; Recursive Least Squared (RLS) algorithm;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Computer Engineering Conference (ICENCO), 2010 International
  • Conference_Location
    Giza
  • Print_ISBN
    978-1-61284-184-7
  • Type

    conf

  • DOI
    10.1109/ICENCO.2010.5720442
  • Filename
    5720442