Title
Performance analysis of triple correlated selection combining for cooperative diversity systems
Abstract
In this paper, we analyse the performance of a single-relay cooperative diversity system, which is an effective technique to combat the effects of small scale fading, in a more realistic scenario by assuming a correlation among source-to-relay (SR), relay-to-destination (RD), and source-to-destination (SD) links. A generalised closed form end-to-end symbol error probability (SEP) expression for M-ary phase-shift keying (MPSK) scheme using paired error approach has been derived over correlated Nakagami-m fading channels with decode and forward (DF) protocol being used at the relay node. Moreover, we use similar error approach to analyse the performance of a double correlated cooperative diversity system by assuming the correlation between SR and RD channels. Finally, Monte Carlo simulation has been performed to validate the theoretical results.
Year
DOI
Venue
2013
10.1109/ICC.2013.6655463
Communications
Keywords
Field
DocType
Monte Carlo methods,Nakagami channels,cooperative communication,decode and forward communication,diversity reception,error statistics,phase shift keying,protocols,Mary phase shift keying,Monte Carlo simulation,correlated Nakagami m fading channels,decode and forward protocol,double correlated cooperative diversity system,generalised closed form end to end symbol error probability,paired error approach,relay node,relay to destination links,single relay cooperative diversity system,small scale fading,source to destination links,source to relay links,triple correlated selection combining,Decode and forward (DF) protocol,M-ary phase-shift keying (MPSK),Nakagami-m fading,paired error approach,symbol error probability (SEP)
Monte Carlo method,Diversity scheme,Telecommunications,Fading,Cooperative diversity,Computer science,Keying,Algorithm,Real-time computing,Nakagami distribution,Relay,Phase-shift keying
Conference
ISSN
Citations 
PageRank 
1550-3607
1
0.36
References 
Authors
6
3
Name
Order
Citations
PageRank
Swaminathan, R.140.75
Rajarshi Roy28018.39
M. D. Selvaraj3599.73