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Offloading in Mobile Edge Computing: Task Allocation and Computational Frequency Scaling

Thinh Quang ThinhJianhua TangQuang Duy LãTony Q. S. Quek

Abstract

In this paper, we propose an optimization framework of offloading from a single mobile device (MD) to multiple edge devices. We aim to minimize both total tasks' execution latency and the MD's energy consumption by jointly optimizing the task allocation decision and the MD's central process unit (CPU) frequency. This paper considers two cases for the MD, i.e., fixed CPU frequency and elastic CPU frequency. Since these problems are NP-hard, we propose a linear relaxation-based approach and a semidefinite relaxation (SDR)-based approach for the fixed CPU frequency case, and an exhaustive search-based approach and an SDR-based approach for the elastic CPU frequency case. Our simulation results show that the SDR-based algorithms achieve near optimal performance. Performance improvement can be obtained with the proposed scheme in terms of energy consumption and tasks' execution latency when multiple edge devices and elastic CPU frequency are considered. Finally, we show that the MD's flexible CPU range can have an impact on the task allocation.

IoT and Edge/Fog ComputingAge of Information OptimizationCloud Computing and Resource ManagementComputer scienceCentral processing unitFrequency scalingEnergy consumptionMobile edge computingLatency (audio)Computational complexity theoryRelaxation (psychology)CPU shieldingEdge computing
Citations
887
FWCI
83.20
field-weighted impact
References
45
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References
Energy-Optimal Mobile Cloud Computing under Stochastic Wireless Channel
IEEE Transactions on Wireless Communications · 2013 · 862 citations
Energy-Efficient Resource Allocation for Mobile-Edge Computation Offloading
IEEE Transactions on Wireless Communications · 2016 · 1,534 citations
Mobile-Edge Computing: Partial Computation Offloading Using Dynamic Voltage Scaling
IEEE Transactions on Communications · 2016 · 1,016 citations
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