DocumentCode :
2772638
Title :
Performance Evaluation of MC-CDMA Systems with EGC Diversity over Correlated Selective Fading Channels
Author :
Chen, Joy Iong-Zong ; Liou, Chieh Wen
Author_Institution :
Dep. of Commun. Eng., Da Yeh Univ., Changhua
fYear :
2007
fDate :
11-15 March 2007
Firstpage :
4183
Lastpage :
4187
Abstract :
A new closed-form formula of the joint probability density function (joint probability density function) of the EGC (equal gain combining) diversity with arbitrary correlation coefficients in terms of the generalized Laguerre polynomial is adopted to analyze the error probability for the performance of a MC-CDMA (multi-carrier coded-division multiple-access) system in this investigation. For the shake of avoiding the difficulty of explicitly obtaining the pdf, for example, determining the CF (characteristic functions), of the SNR (signal-to-noise ratio) at the EGC output. The results from the numerical and the simulation work with some of the assumed parameters of correlated Nakagami-m pdf with different correlation coefficients are conduct for validation purpose. The results obviously prove that the superior system performance is obtained for the MC-CDMA system, which is in frequency selective environments with branches correlation, when properly consider and get rid of the impact of branches correlation of fading channels.
Keywords :
Nakagami channels; code division multiple access; diversity reception; error statistics; polynomials; EGC diversity; MC-CDMA systems; branches correlation; characteristic functions; correlated selective fading channels; equal gain combining diversity; error probability; frequency selective environments; generalized Laguerre polynomial; joint probability density function; multicarrier coded-division multiple-access system; signal-to-noise ratio; superior system performance; Diversity reception; Error analysis; Error probability; Fading; Multicarrier code division multiple access; Numerical simulation; Performance analysis; Performance gain; Probability density function; Signal to noise ratio;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Wireless Communications and Networking Conference, 2007.WCNC 2007. IEEE
Conference_Location :
Kowloon
ISSN :
1525-3511
Print_ISBN :
1-4244-0658-7
Electronic_ISBN :
1525-3511
Type :
conf
DOI :
10.1109/WCNC.2007.764
Filename :
4225009
Link To Document :
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