Title :
An adaptive blind equalizer with signal separation for a MIMO system transmitting QAM signals
Author :
Moazzami, Farzad ; Cole-Rhodes, Arlene
Author_Institution :
Dept. of Electr. & Comput. Eng., Morgan State Univ., Baltimore, MD
Abstract :
In this work we propose a multiple-input multiple-output (MIMO) equalization scheme which uses the CMA+AMA equalizer in a modified multi-stage approach that simultaneously recovers all signal sources. The CMA+AMA equalizer minimizes a linear combination of the constant modulus algorithm (CMA) and alphabet-matched algorithm (AMA) cost functions, and this has been shown to be an effective equalizer for recovering QAM signals in the SISO and SIMO environment. The MIMO equalizer applies individual multiple-input single-output (MISO) equalizers to the received data stream, which is modified during the update process, to simultaneously remove the recovered sources using a channel estimator. By measuring the mean square error (MSE) and symbol error rates (SER) for the recovered sources, we show the effectiveness of this new equalizer in recovering all sources transmitted by the MIMO system.
Keywords :
MIMO communication; channel estimation; equalisers; mean square error methods; quadrature amplitude modulation; CMA-AMA equalizer; MIMO system; QAM signals; adaptive blind equalizer; alphabet-matched algorithm cost functions; channel estimator; constant modulus algorithm; mean square error; multiple-input multiple-output equalization scheme; quadrature amplitude modulation; signal separation; single-input multiple-output systems; single-input single-output system; symbol error rates; Adaptive equalizers; Blind equalizers; Collaboration; Convergence; Cost function; Government; MIMO; Power system modeling; Quadrature amplitude modulation; Source separation; Alphabet-matched Algorithm (AMA); Blind Equalizers; Channel Estimation; Constant Modulus Algorithm (CMA); MIMO Systems; QAM Signals;
Conference_Titel :
Military Communications Conference, 2008. MILCOM 2008. IEEE
Conference_Location :
San Diego, CA
Print_ISBN :
978-1-4244-2676-8
Electronic_ISBN :
978-1-4244-2677-5
DOI :
10.1109/MILCOM.2008.4753271