Title :
Ergodic Capacity of Cognitive Radio Under Imperfect Channel-State Information
Author :
Rezki, Zouheir ; Alouini, Mohamed-Slim
Author_Institution :
Electr. Eng. Program, King Abdullah Univ. of Sci. & Technol., Thuwal, Saudi Arabia
fDate :
6/1/2012 12:00:00 AM
Abstract :
A spectrum-sharing communication system where the secondary user is aware of the instantaneous channel-state information (CSI) of the secondary link but knows only the statistics and an estimated version of the secondary transmitter-primary receiver link is investigated. The optimum power profile and the ergodic capacity of the secondary link are derived for general fading channels [with a continuous probability density function (pdf)] under the average and peak transmit power constraints and with respect to the following two different interference constraints: 1) an interference outage constraint and 2) a signal-to-interference outage constraint. When applied to Rayleigh fading channels, our results show, for example, that the interference constraint is harmful at the high-power regime, because the capacity does not increase with the power, whereas at the low-power regime, it has a marginal impact and no-interference performance, which corresponds to the ergodic capacity under average or peak transmit power constraint in the absence of the primary user, may be achieved.
Keywords :
Rayleigh channels; cognitive radio; radio receivers; radio transmitters; radiofrequency interference; Rayleigh fading channels; average transmit power constraints; cognitive radio; continuous probability density function; ergodic capacity; general fading channels; high-power regime; imperfect channel-state information; instantaneous CSI; interference outage constraint; low-power regime; optimum power profile; pdf; peak transmit power constraints; secondary transmitter-primary receiver link; signal-to-interference outage constraint; spectrum-sharing communication system; Channel estimation; Cognitive radio; Fading; Interference; Radio transmitters; Receivers; Silicon; Cognitive radio (CR); ergodic capacity and interference outage constraint; optimal power allocation; spectrum sharing;
Journal_Title :
Vehicular Technology, IEEE Transactions on
DOI :
10.1109/TVT.2012.2195042