[1] Beres E, Adve R. On selection cooperation in distributed networks [C]// Proceedings of 40th CISS. Princeton University (NJ), USA: Information Sciences and Systems, 2006: 1056-1061. [2] Yi Z H, Kim I M. Diversity order analysis of the decode-and-forward cooperative networks with relay selection [J]. IEEE Transaction on Wireless Communications, 2008, 7(5): 1792-1799. [3] Duong T Q, Bao V N Q. Performance analysis of selection decode-and-forward relay networks [J]. IEEE Electronics Letters, 2008, 44(20): 1206-1207. [4] Michalopoulos D S, Karagiannidis G K. Performance analysis of single relay selection in Rayleigh fading [J]. IEEE Transactions on Wireless Communications, 2008, 7(10): 3718-3724. [5] Da Costa D B, A¨?ssa S. Performance analysis of relay selection techniques with clustered fixed-gain relays [J]. IEEE Signal Processing Letters, 2010, 17(2): 201-204. [6] Maham B, HjΦrungnes A. Asymptotic performance analysis of amplify-and-forward cooperative networks in a Nakagami-m fading environment [J]. IEEE Communications Letters, 2009, 13(5): 300-302. [7] Maham B, HjΦrungnes A. Performance analysis of amplify-and-forward opportunistic relaying in Rician fading [J]. IEEE Signal Processing Letters, 2009, 16(8): 643-646. [8] Gradshteyn I S, Ryzhik I M. Table of integrals, series, and products [M]. San Diego: Academic Press, 2007. [9] Abramowitz M, Stegun I A. Handbook of mathematical functions with formulas, graphs, and mathematical tables [M]. New York: Dover, 1970. [10] Simon M K, Alouini M S. Digital communication over fading channels [M]. New York: Wiley, 2000. [11] Kim J B, Kim D. Comparison of tightly powerconstrained performances for opportunistic amplifyand-forward relaying with partial or full channel information [J]. IEEE Communications Letters, 2009, 13(2): 100-102.
|