Multi-Objective Resource Allocation in Full-Duplex SWIPT Systems
October 06, 2015 Β· Declared Dead Β· π 2016 IEEE International Conference on Communications (ICC)
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Authors
Shiyang Leng, Derrick Wing Kwan Ng, Nikola Zlatanov, Robert Schober
arXiv ID
1510.01434
Category
cs.IT: Information Theory
Citations
42
Venue
2016 IEEE International Conference on Communications (ICC)
Last Checked
6 months ago
Abstract
In this paper, we investigate the resource allocation algorithm design for full-duplex simultaneous wireless information and power transfer (FD-SWIPT) systems. The considered system comprises a FD radio base station, multiple single-antenna half-duplex (HD) users, and multiple energy harvesters equipped with multiple antennas. We propose a multi-objective optimization framework to study the trade-off between uplink transmit power minimization, downlink transmit power minimization, and total harvested energy maximization. The considered optimization framework takes into account heterogeneous quality of service requirements for uplink and downlink communication and wireless power transfer. The non-convex multi-objective optimization problem is transformed into an equivalent rank-constrained semidefinite program (SDP) and solved optimally by SDP relaxation. The solution of the proposed framework results in a set of Pareto optimal resource allocation policies. Numerical results unveil an interesting trade-off between the considered conflicting system design objectives and reveal the improved power efficiency facilitated by FD in SWIPT systems compared to traditional HD systems.
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