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Joint Computation and Communication Design for UAV-Assisted Mobile Edge Computing in IoT

IEEE Transactions on Industrial Informatics · 2019 · Vol. 16(8) · pp. 5505–5516
Tiankui ZhangYu XuJonathan LooDingcheng YangLin Xiao

Abstract

Unmanned aerial vehicle (UAV)-assisted mobile edge computing (MEC) system is a prominent concept, where a UAV equipped with an MEC server is deployed to serve a number of terminal devices (TDs) of Internet of Things in a finite period. In this article, each TD has a certain latency-critical computation task in each time slot to complete. Three computation strategies can be available to each TD. First, each TD can operate local computing by itself. Second, each TD can partially offload task bits to the UAV for computing. Third, each TD can choose to offload task bits to access point via UAV relaying. We propose a new optimization problem formulation that aims to minimize the total energy consumption including communication-related energy, computation-related energy and UAV's flight energy by optimizing the bits allocation, time slot scheduling, and power allocation as well as UAV trajectory design. As the formulated problem is nonconvex and difficult to find the optimal solution, we propose to solve the problem by two parts, and obtain the near optimal solution by the Lagrangian duality method and successive convex approximation technique, respectively. By analysis, the proposed algorithm can be guaranteed to converge within a dozen of iterations. Finally, numerical results are given to validate the proposed algorithm, which is verified to be efficient and superior to the other benchmark cases.

UAV Applications and OptimizationVideo Surveillance and Tracking MethodsIoT and Edge/Fog ComputingComputer scienceMobile edge computingJoint (building)Edge computingMobile telephonyInternet of ThingsMobile computingComputationEnhanced Data Rates for GSM EvolutionEmbedded system

Funding

  • National Natural Science Foundation of China
Citations
424
FWCI
327.97
field-weighted impact
References
34
Percentile
100%
vs. same field & year
Citations per year
References
Fog and IoT: An Overview of Research Opportunities
IEEE Internet of Things Journal · 2016 · 2,307 citations
Throughput Maximization for UAV-Enabled Mobile Relaying Systems
IEEE Transactions on Communications · 2016 · 1,341 citations
Joint Offloading and Trajectory Design for UAV-Enabled Mobile Edge Computing Systems
IEEE Internet of Things Journal · 2018 · 495 citations
Energy Minimization for Wireless Communication With Rotary-Wing UAV
IEEE Transactions on Wireless Communications · 2019 · 1,984 citations
Computation Rate Maximization in UAV-Enabled Wireless-Powered Mobile-Edge Computing Systems
IEEE Journal on Selected Areas in Communications · 2018 · 852 citations
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