DocumentCode :
1328262
Title :
An Exact Performance Analysis of MRC / OSTBC over Generalized Fading Channels
Author :
Ropokis, George A. ; Rontogiannis, Athanasios A. ; Mathiopoulos, P. Takis ; Berberidis, Kostas
Author_Institution :
Dept. of Comput. Eng. & Inf., Univ. of Patras, Rio, Greece
Volume :
58
Issue :
9
fYear :
2010
fDate :
9/1/2010 12:00:00 AM
Firstpage :
2486
Lastpage :
2492
Abstract :
A unified analytical framework for evaluating the performance of maximal ratio combining (MRC) and orthogonal space-time block coding (OSTBC) over generalized fading channels is presented. The basic motivation for developing such a framework pertains to analyzing the distribution of a sum of squared random variables (RVs) belonging to different families of fading distributions. Following a novel analytical approach stemming from the definition of a common moment generating function (MGF) model for these families of distributions, the probability density function (PDF) and the cumulative distribution function (CDF) of a general sum of squared RVs are expressed by simple infinite Gamma series expansions. Based on these expressions, the capacity and error probability of MRC/OSTBC over generalized fading channels is thoroughly studied. The developed theory is used to evaluate the performance of OSTBC for a mixed Nakagami-m/Rice fading model and novel analytical results are presented. The accuracy of the derived expressions is validated by extensive Monte Carlo simulations.
Keywords :
Monte Carlo methods; Nakagami channels; Rician channels; block codes; channel coding; diversity reception; error statistics; orthogonal codes; space-time codes; CDF; MGF model; MRC; Monte Carlo simulations; Nakagami-m fading model; OSTBC; PDF; Rice fading model; analytical approach; cumulative distribution function; error probability; fading distributions; generalized fading channels; infinite Gamma series expansions; maximal ratio combining; moment generating function model; orthogonal space-time block coding; probability density function; random variables; Analytical models; Capacity planning; Error probability; Fading; Performance analysis; Probability density function; Signal to noise ratio; Diversity methods; MRC; OSTBC; fading channels; performance analysis;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/TCOMM.2010.09.090282
Filename :
5577797
Link To Document :
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