DocumentCode
2455527
Title
Triple-branch MRC Diversity in Weibull Fading Channels
Author
Papadimitriou, Zafiro G. ; Bithas, Petros S. ; Mathiopoulos, P. Takis ; Sagias, Nikos C. ; Merakos, Lazaros
Author_Institution
Nat. Obs. of Athens, Athens
fYear
2007
fDate
23-27 Sept. 2007
Firstpage
247
Lastpage
251
Abstract
In this paper a performance analysis of triple-branch maximal ratio combining (MRC) diversity receivers operating over an arbitrarily correlated Weibull fading environment is presented. For the trivariate Weibull distribution infinite series representations for the joint probability density function (PDF) and the cumulative distribution function (CDF) are derived. Moreover, a novel analytical expression for the joint moment-generating function (MGF) is presented. It is assumed that the arbitrarily correlated variates do not necessarily have identical fading parameters and average powers. These series representations are readily applicable to the performance analysis of a triple-branch MRC receiver. Furthermore, the average bit error probability (ABEP) is then derived and analytically studied. The proposed mathematical analysis is accompanied by various numerical results, with parameters of interest the fading severity, the correlation and the power decay factor.
Keywords
Weibull distribution; diversity reception; error statistics; fading channels; Weibull fading channels; arbitrarily correlated Weibull fading environment; average bit error probability; cumulative distribution function; joint moment-generating function; joint probability density function; power decay factor; series representations; triple-branch MRC diversity; triple-branch maximal ratio combining diversity receivers; trivariate Weibull distribution infinite series representations; Closed-form solution; Distribution functions; Diversity reception; Informatics; MIMO; Nakagami distribution; Performance analysis; Probability density function; Weibull distribution; Weibull fading channels; Triple-branch diversity; Weibull fading; arbitrary correlation; maximal-ratio combining (MRC);
fLanguage
English
Publisher
ieee
Conference_Titel
Signal Design and Its Applications in Communications, 2007. IWSDA 2007. 3rd International Workshop on
Conference_Location
Chengdu
Print_ISBN
978-1-4244-1074-3
Electronic_ISBN
978-1-4244-1074-3
Type
conf
DOI
10.1109/IWSDA.2007.4408369
Filename
4408369
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