Joint beamforming and power allocation for multiple primary users and secondary users in cognitive MIMO systems via game theory

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Abstract

We consider a system where a licensed radio spectrum is shared by multiple primary users (PUs) and secondary users (SUs). As the spectrum of interest is licensed to primary network, power and channel allocation must be carried out within the cognitive radio network so that n0 excessive interference is caused to PUs. For this system, we study the joint beamforming and power allocation problem via game theory in this paper. The problem is formulated as a non-cooperative beamforming and power allocation game, subject to the interference constraints of PUs as well as the peak transmission power constraints of SUs. We design a joint beamforming and power allocation algorithm for maximizing the total throughput of SUs. which is implemented by alternating iteration of minimum mean square error based decision feedback beamforming and a best response based iterative power allocation algorithm. Simulation results show that the algorithm lias better performance than an existing algorithm and can converge to a locally optimal sum utility. © 2013 KSII.

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APA

Zhao, F., Zhang, J., & Chen, H. (2013). Joint beamforming and power allocation for multiple primary users and secondary users in cognitive MIMO systems via game theory. KSII Transactions on Internet and Information Systems, 7(6), 1379–1397. https://doi.org/10.3837/tiis.2013.06.002

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