Transmission Power Adaption for Full-Duplex Relay-Aided Device-to-Device Communication
Abstract
:1. Introduction
- (1)
- The main contribution of the article is to draft a novel D2D relaying-aided scheme to improve the transmitting rate of a cellular user who is in deep fading or shadowing. Unlike the works that have been done before, our scheme guarantees cellular user’ quality of service in terms of the minimum rate requirement. This means that the performance of the cellular user is improved rather than deteriorated or just maintained, as done in [13,21].
- (2)
- We consider an independent power constraint for the BS and D2D relay respectively rather than under the aggregate power constraint as in [27]. Although we use two inequalities to replace one equation, we also derived a closed form expression of the optimal allocated power and the power split factor.
- (3)
- By making comparisons with traditional direct communication of cellular mode and HD relaying mode, the FD mode we proposed could use the minimum transmitting power to make sure the cellular’ rate requirement with also achieve the D2D rate as far as possible. It also has been demonstrated that the approach we proposed is more prominent in terms of spectral efficiency and power efficiency, in the situation that the residual loopback interference generating the D2D relay is controlled at a tolerable level.
2. System Model
FD Relay-Aided D2D Communication Scheme
3. The Optimal Power Adaption Strategies
4. Simulation Results
5. Conclusions
Acknowledgments
Author Contributions
Conflicts of Interest
References
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Dun, H.; Ye, F.; Li, Y. Transmission Power Adaption for Full-Duplex Relay-Aided Device-to-Device Communication. Symmetry 2017, 9, 38. https://doi.org/10.3390/sym9030038
Dun H, Ye F, Li Y. Transmission Power Adaption for Full-Duplex Relay-Aided Device-to-Device Communication. Symmetry. 2017; 9(3):38. https://doi.org/10.3390/sym9030038
Chicago/Turabian StyleDun, Hui, Fang Ye, and Yibing Li. 2017. "Transmission Power Adaption for Full-Duplex Relay-Aided Device-to-Device Communication" Symmetry 9, no. 3: 38. https://doi.org/10.3390/sym9030038