Title :
BER performance analysis of interference-limited BPSK cooperative communication systems with cochannel interference in Nakagami-m fading channels
Author :
Akhoirshida, M.S. ; Matalgah, Mustafa M.
Author_Institution :
Dept. of Electr. Eng., Univ. of Mississippi, Oxford, MS, USA
Abstract :
The average bit error rate (BER) performance of interference-limited dual-hop decode-and-forward (DF) cooperative systems with cochannel interference (CCI) at both relay (R) and destination (D) nodes is analyzed in Nakagami-m fading channels with arbitrary (integer as well as non-integer) values of m. This channel condition is assumed for both the desired signal as well as cochannel interfering signals. In addition, the practical case of unequal average fading powers between the two hops is assumed in this analysis. Accurate closed-form approximate expressions for the BER performance of binary phase shift keying (BPSK) modulation scheme are derived. The analysis assumes an arbitrary number of independent and non-identically distributed (i.n.i.d.) interfering signals at both R and D nodes. The derived closed-form expressions are simple and easy to evaluate. We verify the accuracy of the derived expressions using Monte-Carlo Simulation.
Keywords :
Monte Carlo methods; Nakagami channels; cochannel interference; cooperative communication; decode and forward communication; error statistics; phase shift keying; BER performance analysis; CCI; Monte-Carlo Simulation; Nakagami-m fading channels; accurate closed-form approximate expressions; average bit error rate performance; binary phase shift keying modulation scheme; cochannel interference; cochannel interfering signals; destination node; interference-limited BPSK cooperative communication systems; interference-limited dual-hop decode-and-forward cooperative systems; relay node; unequal average fading powers; Binary phase shift keying; Bit error rate; Cooperative communication; Fading; Interchannel interference; Relays; Cooperative communication; Nakagami-m fading; cochannel interference; decode-and-forward relaying; error performance;
Conference_Titel :
Radio and Wireless Symposium (RWS), 2013 IEEE
Conference_Location :
Austin, TX
Print_ISBN :
978-1-4673-2929-3
Electronic_ISBN :
2164-2958
DOI :
10.1109/RWS.2013.6486732