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Learning-Based Computation Offloading for IoT Devices With Energy Harvesting

IEEE Transactions on Vehicular Technology · 2019 · Vol. 68(2) · pp. 1930–1941
Minghui MinLiang XiaoYe ChenPeng ChengDi WuWeihua Zhuang

Abstract

Internet of Things (IoT) devices can apply mobile edge computing (MEC) and energy harvesting (EH) to provide high-level experiences for computational intensive applications and concurrently to prolong the lifetime of the battery. In this paper, we propose a reinforcement learning (RL) based offloading scheme for an IoT device with EH to select the edge device and the offloading rate according to the current battery level, the previous radio transmission rate to each edge device, and the predicted amount of the harvested energy. This scheme enables the IoT device to optimize the offloading policy without knowledge of the MEC model, the energy consumption model, and the computation latency model. Further, we present a deep RL-based offloading scheme to further accelerate the learning speed. Their performance bounds in terms of the energy consumption, computation latency, and utility are provided for three typical offloading scenarios and verified via simulations for an IoT device that uses wireless power transfer for energy harvesting. Simulation results show that the proposed RL-based offloading scheme reduces the energy consumption, computation latency, and task drop rate, and thus increases the utility of the IoT device in the dynamic MEC in comparison with the benchmark offloading schemes.

Energy Harvesting in Wireless NetworksIoT and Edge/Fog ComputingAge of Information OptimizationComputation offloadingComputer scienceEnergy consumptionMobile edge computingEdge computingMobile deviceWirelessEdge deviceReinforcement learningComputation

Funding

  • National Natural Science Foundation of China
  • Fundamental Research Funds for the Central Universities
  • National Mobile Communications Research Laboratory, Southeast University
Citations
536
FWCI
40.66
field-weighted impact
References
40
Percentile
100%
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Citations per year
References
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