Latency Minimization for Wireless Powered Mobile Edge Computing Networks With Nonlinear Rectifiers

  • Park, Junhee
  • Solanki, Sourabh
  • Baek, Seunghwan
  • Lee, Inkyu
Citations

WEB OF SCIENCE

30
Citations

SCOPUS

33

초록

This paper investigates a wireless powered mobile edge computing (MEC) network where a hybrid access point (H-AP) serves energy-constrained devices. For such a wireless powered MEC network, the H-AP first transmits wireless information and energy simultaneously in the downlink. Then, by utilizing the harvested energy, the device processes both its local data and the received data from the H-AP. In this system, we minimize the latency by jointly optimizing the power splitting ratio of rectifiers, the data offloading power, the local computing frequency, and the data offloading ratio at the device. By applying a polyblock outer approximation procedure, we propose an algorithm which guarantees the optimal solution. Simulation results verify the efficiency of the proposed algorithm compared to conventional schemes.

키워드

ServersWireless communicationWireless sensor networksDownlinkMinimizationReceiversEdge computingMobile edge computingwireless power transferlatency minimizationRESOURCE-ALLOCATIONOPTIMIZATIONMAXIMIZATIONINFORMATION
제목
Latency Minimization for Wireless Powered Mobile Edge Computing Networks With Nonlinear Rectifiers
저자
Park, JunheeSolanki, SourabhBaek, SeunghwanLee, Inkyu
DOI
10.1109/TVT.2021.3093630
발행일
2021-08
유형
Article
저널명
IEEE Transactions on Vehicular Technology
70
8
페이지
8320 ~ 8324