DocumentCode :
3028611
Title :
Perceptron-based CDMA receiver in non-Gaussian noise
Author :
Sharif, B.S. ; Chuah, T.C. ; Hinton, O.R. ; Jimaa, S.A.
Author_Institution :
Etisalat Coll. of Eng., Sharjah, United Arab Emirates
Volume :
2
fYear :
2003
fDate :
14-17 Dec. 2003
Firstpage :
643
Abstract :
Linear adaptive interference suppression is an effective approach in mitigating Multiple Access Interference (MAI) in CDMA communications channels under Gaussian noise. However, applying Gaussian-based linear receivers to realistic communications channels affected by impulsive noise can result in performance degradation and is therefore a suboptimal solution. The linear adaptive receiver is limited by its structural formulation as a simple linear combiner with a hyperplanar decision boundary that is unable to form arbitrarily non-linear boundaries inherent in CDMA communications, particularly under hostile channel conditions. In this paper, we consider the use of a multilayer perceptron (MLP) for robust single-user detection in multiuser non-Gaussian channels; the receiver is trained via the back-propagation (BP) algorithm using a known training sequence. Theoretical arguments supported by simulation suggest that the perceptron-based receiver, which combines the basic attributes of nonlinearity, adaptivity and non-parametric approach, shows promise as a near-far resistant receiver in non-Gaussian environments.
Keywords :
adaptive signal detection; backpropagation; code division multiple access; interference suppression; multilayer perceptrons; phase shift keying; adaptivity; backpropagation algorithm; binary phase-shift keying; coherent synchronous system; hypothesis-testing problem; linear adaptive interference suppression; multilayer perceptron; multiple access interference; multiuser channels; nonGaussian noise; nonlinearity; nonparametric approach; perceptron-based CDMA receiver; robust single-user detection; suboptimal solution; Communication channels; Degradation; Gaussian channels; Gaussian noise; Interference suppression; Least squares approximation; Multiaccess communication; Multilayer perceptrons; Multiple access interference; Noise robustness;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electronics, Circuits and Systems, 2003. ICECS 2003. Proceedings of the 2003 10th IEEE International Conference on
Print_ISBN :
0-7803-8163-7
Type :
conf
DOI :
10.1109/ICECS.2003.1301867
Filename :
1301867
Link To Document :
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