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Open AccessJournal ArticleDOI

Optimal 3D-Trajectory Design and Resource Allocation for Solar-Powered UAV Communication Systems

TLDR
This paper investigates the resource allocation algorithm design for multicarrier solar-powered unmanned aerial vehicle (UAV) communication systems and proposes a low-complexity iterative suboptimal online scheme based on the successive convex approximation.
Abstract
In this paper, we investigate the resource allocation algorithm design for multicarrier solar-powered unmanned aerial vehicle (UAV) communication systems. In particular, the UAV is powered by the solar energy enabling sustainable communication services to multiple ground users. We study the joint design of the 3D aerial trajectory and the wireless resource allocation for maximization of the system sum throughput over a given time period. As a performance benchmark, we first consider an off-line resource allocation design assuming non-causal knowledge of the channel gains. The algorithm design is formulated as a mixed-integer non-convex optimization problem taking into account the aerodynamic power consumption, solar energy harvesting, a finite energy storage capacity, and the quality-of-service requirements of the users. Despite the non-convexity of the optimization problem, we solve it optimally by applying monotonic optimization to obtain the optimal 3D-trajectory and the optimal power and subcarrier allocation policy. Subsequently, we focus on the online algorithm design that only requires real-time and statistical knowledge of the channel gains. The optimal online resource allocation algorithm is motivated by the off-line scheme and entails a high computational complexity. Hence, we also propose a low-complexity iterative suboptimal online scheme based on the successive convex approximation. Our simulation results reveal that both the proposed online schemes closely approach the performance of the benchmark off-line scheme and substantially outperform two baseline schemes. Furthermore, our results unveil the tradeoff between solar energy harvesting and power-efficient communication. In particular, the solar-powered UAV first climbs up to a high altitude to harvest a sufficient amount of solar energy and then descends again to a lower altitude to reduce the path loss of the communication links to the users it serves.

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Citations
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Journal ArticleDOI

UAV Communications for 5G and Beyond: Recent Advances and Future Trends

TL;DR: A comprehensive survey on UAV communication toward 5G/B5G wireless networks is presented and an exhaustive review of various 5G techniques based on Uav platforms is provided, which are categorize by different domains, including physical layer, network layer, and joint communication, computing, and caching.
Journal ArticleDOI

3D Trajectory Optimization in Rician Fading for UAV-Enabled Data Harvesting

TL;DR: In this paper, a UAV-enabled WSN is employed to collect data from multiple sensor nodes (SNs) subject to a prescribed reliability constraint for each SN by jointly optimizing the UAV communication scheduling and 3D trajectory.
Journal ArticleDOI

Joint Trajectory and Resource Allocation Design for Energy-Efficient Secure UAV Communication Systems

TL;DR: The introduction of a jammer UAV facilitates a highly flexible trajectory design of the information UAV which is critical to improving the system energy efficiency and the proposed design can focus the artificial noise on eavesdroppers offering a strong security mean to the system.
Posted Content

Prospective Multiple Antenna Technologies for Beyond 5G

TL;DR: Three new multiple antenna technologies that can play key roles in beyond 5G networks: cell-free massive MIMO, beamspace massive M IMO, and intelligent reflecting surfaces are surveyed.
Journal ArticleDOI

Joint Resources and Workflow Scheduling in UAV-Enabled Wirelessly-Powered MEC for IoT Systems

TL;DR: A new time division multiple access (TDMA) based workflow model is proposed, which allows parallel transmissions and executions in the UAV-assisted system, and an alternative algorithm is developed to set the initial point closer to the optimal solution.
References
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Journal ArticleDOI

What Will 5G Be

TL;DR: This paper discusses all of these topics, identifying key challenges for future research and preliminary 5G standardization activities, while providing a comprehensive overview of the current literature, and in particular of the papers appearing in this special issue.
Journal ArticleDOI

Wireless communications with unmanned aerial vehicles: opportunities and challenges

TL;DR: An overview of UAV-aided wireless communications is provided, by introducing the basic networking architecture and main channel characteristics, highlighting the key design considerations as well as the new opportunities to be exploited.
Journal ArticleDOI

A tutorial on decomposition methods for network utility maximization

TL;DR: This tutorial paper first reviews the basics of convexity, Lagrange duality, distributed subgradient method, Jacobi and Gauss-Seidel iterations, and implication of different time scales of variable updates, and introduces primal, dual, indirect, partial, and hierarchical decompositions, focusing on network utility maximization problem formulations.
Journal ArticleDOI

Joint Trajectory and Communication Design for Multi-UAV Enabled Wireless Networks

TL;DR: In this paper, the minimum throughput over all ground users in the downlink communication was maximized by optimizing the multiuser communication scheduling and association jointly with the UAV's trajectory and power control.
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Furthermore, our results unveil the tradeoff between solar energy harvesting and power-efficient communication.