Outage Analysis of Decode-and-Forward Cognitive Dual-Hop Systems With the Interference Constraint in Nakagami-$m$ Fading Channels
Caijun Zhong, Tharm Ratnarajah, Kai‐Kit Wong · IEEE Transactions on Vehicular Technology · 2011
This paper studies the outage probability performance of decode-and-forward (DF) cognitive dual-hop systems for Nakagami-mfading channels, with consideration of an interference temperature limit. An exact outage probability expression is derived, and the impact of various key system parameters, such as interference temperature and fading severity, is investigated. Our results show that the interference temperature constraint causes the outage saturation phenomenon, but the outage performance gets better when the channel quality of the secondary transmission links improves. However, how the channel quality of the interfering links affects the outage performance depends on the channel quality of the secondary transmission links, as well as the interference temperature constraint and maximum transmit power.