DocumentCode :
3201679
Title :
Adaptive packet equalization for indoor radio channel in personal communication services
Author :
Chang, Po-Rong ; Wang, Bor-Chin ; Chang, Chili-Chuang ; Yeh, Bao-Fuh
Author_Institution :
Dept. of Commun. Eng., Nat. Chiao Tung Univ., Hsinchu, Taiwan
fYear :
1994
fDate :
16-19 May 1994
Firstpage :
37076
Lastpage :
38537
Abstract :
The paper investigates the application of the multilayer perceptron structure to the packet wise adaptive decision feedback equalization of a M-ary QAM signal through a TDMA indoor radio channel in the presence of intersymbol interference (ISI) and additive Gaussian noise. Since the multilayer neural networks are capable of producing complex decision regions with arbitrarily nonlinear boundaries, this would greatly improve the performance of conventional decision feedback equalizer (DFE), where the decision boundaries of conventional DFE´s are linear. Nevertheless, the applications of the traditional multilayer neural networks have been limited to real valued signals. To tackle this difficulty, a neural based DFE is proposed to deal with the complex QAM signal over the complex valued fading multipath radio channel without performing time consuming complex valued backpropagation training algorithms, while maintaining almost the same computational complexity as the original real valued training algorithm. Moreover, this neural based DFE trained by packet wise backpropagation algorithm would approach an ideal equalizer after receiving a sufficient number of packets. Results show that the neural based DFE provides a superior bit error rate performance relative to the conventional mean square DFE, especially in poor signal to noise ratio conditions
Keywords :
computational complexity; indoor radio; intersymbol interference; multilayer perceptrons; multimedia communication; personal communication networks; telecommunication computing; time division multiple access; M-ary QAM signal; TDMA indoor radio channel; adaptive packet equalization; additive Gaussian noise; arbitrarily nonlinear boundaries; complex decision regions; complex valued fading multipath radio channel; computational complexity; decision feedback equalizer; indoor radio channel; intersymbol interference; multilayer neural networks; multilayer perceptron structure; neural based DFE; packet wise adaptive decision feedback equalization; packet wise backpropagation algorithm; personal communication services; Adaptive equalizers; Backpropagation algorithms; Decision feedback equalizers; Indoor radio communication; Intersymbol interference; Multi-layer neural network; Multilayer perceptrons; Neural networks; Quadrature amplitude modulation; Time division multiple access;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Multimedia Communications, 1994. MULTIMEDIA '94., 5th IEEE COMSOC International Workshop on
Conference_Location :
Kyoto
Type :
conf
DOI :
10.1109/IWMC.1994.601235
Filename :
601235
Link To Document :
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