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Joint Position and Time Allocation Optimization of UAV Enabled Time Allocation Optimization Networks

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  • DOI number:10.1109/TCOMM.2019.2896973

  • Journal:IEEE Transactions on Communications

  • Abstract:In this paper, we investigate an unmanned aerial vehicle (UAV) enabled wireless powered communication network, where the UAV with constant power supply first charges all users by transmitting wireless energy to all users simultaneously, and after that all users send their own information to the UAV. Our target is the joint optimization of the time allocation as well as the position of the UAV to make the uplink sum achievable rate for all users as large as possible. To solve this non-convex problem, we first derive the analytic optimal solution of the time allocation, which is expressed as the function of UAV position. The original problem, after substituting the derived optimal time allocation, is reformulated as a new optimization problem whose optimization variable is only UAV position. We propose a sequential unconstrained convex minimization-based algorithm to obtain the globally optimal solution. The simulation results demonstrate that the performance of our proposed algorithm matches with that obtained by two-dimensional exhaustive search. To decrease the complexity, a Dinkelbach-based algorithm to obtain the locally optimal solution is also proposed. The simulation results show that the performances of our proposed two algorithms are superior to the schemes without time allocation optimization and/or position optimization.

  • Co-author:Li Yiqing,秦家银

  • First Author:jmiao

  • Indexed by:Journal paper

  • Correspondence Author:张旗

  • Discipline:Engineering

  • First-Level Discipline:Information and Communication Engineering

  • Document Type:J

  • Page Number:3806–3816

  • ISSN No.:1558-0857

  • Translation or Not:no

  • Date of Publication:2019-05-01

  • Included Journals:SCI

  • Links to published journals:https://ieeexplore.ieee.org/document/8632980


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