Title :
Improving Blind Equalization Algorithm for Wireless Communication Systems
Author :
Sun, Lijun ; He, Ying
Author_Institution :
Henan Univ. of Technol., Zhengzhou
fDate :
July 30 2007-Aug. 1 2007
Abstract :
Blind equalization technique is an effective approach for canceling the intersymbol interference (ISI) induced by multipath effect in digital wireless communications. The convergence behavior as well as the residual mean square error (MSE) of a blind equalizer is an interesting issue in its design. Perhaps the main drawback of the traditional constant modulus algorithm (CMA) is its relatively slow convergence, especially in the time varying multipath wireless channels. In order to overcome this difficulty, a novel combined blind equalization algorithm based on a normalized iterative method is proposed in this paper. At the beginning of the iteration process, the normalized super-exponential iterative algorithm is utilized to perform an initial equalization, and then the iteration process switches to a decision-directed (DD) algorithm at appropriate values of the mean square error. This switch method can obtain a great improvement in both convergence behavior and residual MSE. The performance of the proposed algorithm is verified through computer simulations.
Keywords :
blind equalisers; intersymbol interference; iterative methods; mean square error methods; wireless channels; blind equalization algorithm; blind equalizer; constant modulus algorithm; decision-directed algorithm; digital wireless communications; intersymbol interference; normalized iterative method; residual mean square error; super-exponential iterative algorithm; time varying multipath wireless channels; wireless communication systems; Blind equalizers; Convergence; Decision feedback equalizers; Interference cancellation; Intersymbol interference; Iterative algorithms; Iterative methods; Mean square error methods; Switches; Wireless communication;
Conference_Titel :
Software Engineering, Artificial Intelligence, Networking, and Parallel/Distributed Computing, 2007. SNPD 2007. Eighth ACIS International Conference on
Conference_Location :
Qingdao
Print_ISBN :
978-0-7695-2909-7
DOI :
10.1109/SNPD.2007.312