Joint Beamforming and Power Control in the Downlink of Cognitive Radio Networks

We consider a system where a licensed radio spectrum is shared by two networks, namely the primary network and the secondary network. The spectrum is licensed to the primary network, however the secondary network makes opportunistic access of the unused and/or underutilized portions of it by using cognitive radio technology. For such a system, we study the problem of joint power control and beamforming in the downlink of the cognitive radio network and formulate two iterative algorithms considering two different scenarios of spectrum sharing. In the first case, the primary network cooperates with the secondary network to jointly optimize the transmit beamforming weights and total transmitted power by both networks subject to signal to interference plus noise ratio (SINR) constraints of both primary and secondary users. In the second case, the secondary network jointly optimizes the transmit beamforming weights and its total transmitted power satisfying the SINR constraint of the secondary users and maximum tolerable interference constraint to the primary user. Simulation results are provided to show convergence behavior of the iterative algortihms.

[1]  Ying-Chang Liang,et al.  A Two-Phase Channel and Power Allocation Scheme for Cognitive Radio Networks , 2006, 2006 IEEE 17th International Symposium on Personal, Indoor and Mobile Radio Communications.

[2]  Mohammad Saquib,et al.  Joint Transmitter-Receiver Optimization in the Downlink CDMA Systems , 2002, EURASIP J. Adv. Signal Process..

[3]  Holger Boche,et al.  Solution of the multiuser downlink beamforming problem with individual SINR constraints , 2004, IEEE Transactions on Vehicular Technology.

[4]  Simon Haykin,et al.  Cognitive radio: brain-empowered wireless communications , 2005, IEEE Journal on Selected Areas in Communications.

[5]  Leandros Tassiulas,et al.  Transmit beamforming and power control for cellular wireless systems , 1998, IEEE J. Sel. Areas Commun..

[6]  H. Boche,et al.  A general duality theory for uplink and downlink beamforming , 2002, Proceedings IEEE 56th Vehicular Technology Conference.

[7]  Joseph Mitola,et al.  Cognitive radio: making software radios more personal , 1999, IEEE Wirel. Commun..

[8]  K. J. Ray Liu,et al.  Downlink beamforming for DS-CDMA mobile radio with multimedia services , 2001, IEEE Trans. Commun..