DocumentCode :
1944653
Title :
Blind adaptation of a matched filter using the constant modulus algorithm coupled with an optional correction method
Author :
Özçelik, Izzet ; Baykal, Buyurman ; Kale, Izzer
Author_Institution :
Dept. of Electron. Syst., Westminster Univ., UK
Volume :
2
fYear :
2003
fDate :
1-4 July 2003
Firstpage :
291
Abstract :
The matched filter (MF) with the whitening filter (WF) is the optimum receiver front end for the maximum likelihood sequence detection (MLSD). The MF+WF followed by the decision feedback equalizer (DFE) is an approximation for the maximum likelihood (ML) receiver. The estimation of the MF is of utmost importance in a receiver. The WF and the MF are treated separately and the MF is estimated blindly using the constant modulus algorithm (CMA) in this work. In this way, a very simple and blind adaptive way of the MF estimate is obtained instead of the methods like the singular value decomposition (SVD), which is complex and computationally expensive. Moreover, a correction method on the MF is introduced to obtain faster convergence and better performance. Simulations prove that the method is very effective and successful.
Keywords :
decision feedback equalisers; matched filters; maximum likelihood detection; maximum likelihood sequence estimation; radio receivers; singular value decomposition; DFE; SVD; blind adaptation; constant modulus algorithm; decision feedback equalizer; matched filter; maximum likelihood receiver; maximum likelihood sequence detection; optimum receiver; optional correction method; singular value decomposition; whitening filter; AWGN; Additive noise; Additive white noise; Convergence; Gaussian noise; Matched filters; Maximum likelihood detection; Maximum likelihood estimation; Power system modeling; Signal to noise ratio;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Signal Processing and Its Applications, 2003. Proceedings. Seventh International Symposium on
Print_ISBN :
0-7803-7946-2
Type :
conf
DOI :
10.1109/ISSPA.2003.1224871
Filename :
1224871
Link To Document :
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