Joint opportunistic spectrum access and optimal power allocation strategies for full duplex single secondary user MIMO cognitive radio network

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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.

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APA

Yue, W., Ren, Y., Yang, Z., Chen, Z., & Meng, Q. (2015). Joint opportunistic spectrum access and optimal power allocation strategies for full duplex single secondary user MIMO cognitive radio network. KSII Transactions on Internet and Information Systems, 9(10), 3887–3907. https://doi.org/10.3837/tiis.2015.10.007

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