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Joint Offloading and Computing Optimization in Wireless Powered Mobile-Edge Computing Systems

IEEE Transactions on Wireless Communications · 2017 · Vol. 17(3) · pp. 1784–1797
Feng WangJie XuXin WangShuguang Cui

Abstract

Mobile-edge computing (MEC) and wireless power transfer (WPT) have been recognized as promising techniques in the Internet of Things era to provide massive low-power wireless devices with enhanced computation capability and sustainable energy supply. In this paper, we propose a unified MEC-WPT design by considering a wireless powered multiuser MEC system, where a multiantenna access point (AP) (integrated with an MEC server) broadcasts wireless power to charge multiple users and each user node relies on the harvested energy to execute computation tasks. With MEC, these users can execute their respective tasks locally by themselves or offload all or part of them to the AP based on a time-division multiple access protocol. Building on the proposed model, we develop an innovative framework to improve the MEC performance, by jointly optimizing the energy transmit beamforming at the AP, the central processing unit frequencies and the numbers of offloaded bits at the users, as well as the time allocation among users. Under this framework, we address a practical scenario where latency-limited computation is required. In this case, we develop an optimal resource allocation scheme that minimizes the AP's total energy consumption subject to the users' individual computation latency constraints. Leveraging the state-of-the-art optimization techniques, we derive the optimal solution in a semiclosed form. Numerical results demonstrate the merits of the proposed design over alternative benchmark schemes.

Energy Harvesting in Wireless NetworksIoT and Edge/Fog ComputingAdvanced Wireless Communication TechnologiesComputer scienceMobile edge computingComputation offloadingWirelessComputer networkEdge computingBeamformingWireless networkWireless power transferDistributed computing

Funding

  • National Science Foundation
  • U.S. Department of Defense
  • National Natural Science Foundation of China
  • National Key Research and Development Program of China
Citations
944
FWCI
60.17
field-weighted impact
References
39
Percentile
100%
vs. same field & year
Citations per year
Cited by
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References
MIMO Broadcasting for Simultaneous Wireless Information and Power Transfer
IEEE Transactions on Wireless Communications · 2013 · 2,830 citations
An overview of limited feedback in wireless communication systems
IEEE Journal on Selected Areas in Communications · 2008 · 1,522 citations
Wireless powered communication: opportunities and challenges
IEEE Communications Magazine · 2015 · 1,139 citations
Energy-Efficient Resource Allocation for Mobile-Edge Computation Offloading
IEEE Transactions on Wireless Communications · 2016 · 1,534 citations
Fog and IoT: An Overview of Research Opportunities
IEEE Internet of Things Journal · 2016 · 2,307 citations
Mobile-Edge Computing: Partial Computation Offloading Using Dynamic Voltage Scaling
IEEE Transactions on Communications · 2016 · 1,016 citations
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Joint Offloading and Computing Optimization in Wireless Powered Mobile-Edge Computing Systems · Scinovex