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http://dx.doi.org/10.3837/tiis.2015.10.007

Joint Opportunistic Spectrum Access and Optimal Power Allocation Strategies for Full Duplex Single Secondary User MIMO Cognitive Radio Network  

Yue, Wenjing (College of Telecommunications and Information Engineering, Nanjing University of Posts and Telecommunications)
Ren, Yapeng (College of Telecommunications and Information Engineering, Nanjing University of Posts and Telecommunications)
Yang, Zhen (College of Telecommunications and Information Engineering, Nanjing University of Posts and Telecommunications)
Chen, Zhi (College of Computer, Nanjing University of Posts and Telecommunications)
Meng, Qingmin (College of Telecommunications and Information Engineering, Nanjing University of Posts and Telecommunications)
Publication Information
KSII Transactions on Internet and Information Systems (TIIS) / v.9, no.10, 2015 , pp. 3887-3907 More about this Journal
Abstract
This paper introduces a full duplex single secondary user multiple-input multiple-output (FD-SSU-MIMO) cognitive radio network, where secondary user (SU) opportunistically accesses the authorized spectrum unoccupied by primary user (PU) and transmits data based on FD-MIMO mode. Then we study the network achievable average sum-rate maximization problem under sum transmit power budget constraint at SU communication nodes. In order to solve the trade-off problem between SU's sensing time and data transmission time based on opportunistic spectrum access (OSA) and the power allocation problem based on FD-MIMO transmit mode, we propose a simple trisection algorithm to obtain the optimal sensing time and apply an alternating optimization (AO) algorithm to tackle the FD-MIMO based network achievable sum-rate maximization problem. Simulation results show that our proposed sensing time optimization and AO-based optimal power allocation strategies obtain a higher achievable average sum-rate than sequential convex approximations for matrix-variable programming (SCAMP)-based power allocation for the FD transmission mode, as well as equal power allocation for the half duplex (HD) transmission mode.
Keywords
Full duplex; MIMO; opportunistic spectrum access; power allocation;
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