研究目的
To maximize the rate of secondary users in an energy-limited cognitive relay network under the energy causality constraint and the constraint that the demanded rate of primary users is satisfied.
研究成果
The proposed DWPT scheme is greatly preferred for both perfect and imperfect CSI cases when ST is close to PR/SR. The scheme effectively maximizes the rate of secondary users while satisfying the energy causality constraint and the rate demand of primary users.
研究不足
The study assumes perfect and imperfect CSI scenarios. The performance of the proposed DWPT scheme may vary under different channel conditions and network configurations.
1:Experimental Design and Method Selection:
The study involves designing a relay processing matrix, cognitive beamforming vector, and power splitter for a cognitive relay network. The methodology includes the use of semi-definite relaxation technique and Charnes-Cooper transformation for the perfect CSI case, and S-procedure for the imperfect CSI case.
2:Sample Selection and Data Sources:
The study uses a cognitive relay network model with a PT, PR, ST, and SR. The ST is equipped with multiple antennas, while other users have a single antenna.
3:List of Experimental Equipment and Materials:
The study involves the use of multiple-antenna ST and single-antenna PT, PR, and SR.
4:Experimental Procedures and Operational Workflow:
The study involves two phases: in the first phase, PT transmits information to ST, and PR and SR send energy signals to ST; in the second phase, ST relays the traffic from PT to PR and sends its own information to SR.
5:Data Analysis Methods:
The study uses semi-definite programming and convex optimization techniques for data analysis.
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