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Mean-Field Game Theory Based Optimal Caching Control in Mobile Edge Computing

  • Southwest University
  • Shanxi University of Finance and Economics
  • Chongqing University

Research output: Contribution to journalArticlepeer-review

10 Scopus citations

Abstract

Mobile edge computing (MEC) can use wireless access network (RAN) to provide users with nearby information technology (IT) services and cloud computing functions, which creates a high-performance and low latency service environment. By caching the popular content at small base station (SBS) can reduce the heavy backhaul load and the content retransmission. However, the time-varying and dynamic of the content requests may lead to the base station to cache the useless contents. In this paper, we study a distributed caching optimization problem in edge networks (ENs) with the spatio-temporal requirements. In the considered ENs, the cache control is described as a stochastic differential game (SDG) in which each SBS defines a caching strategy to reduce the total cost in terms of the service delay and backhaul link load. To reduce the computational complexity, the original optimization problem is transformed into a mean field game (MFG). We propose a distributed caching iterative control algorithm that decouples the information interaction between the general SBS and others through the mean field distribution. In addition, we obtain the optimal edge caching control strategy, while the existence and uniqueness of the mean field equilibrium (MFE) can also be guaranteed. Simulation results demonstrate that our proposed caching control algorithm can average reduce 27.12% storage cost and achieve better performance than other existing schemes.

Original languageEnglish
Pages (from-to)6585-6598
Number of pages14
JournalIEEE Transactions on Mobile Computing
Volume22
Issue number11
DOIs
StatePublished - Nov 1 2023

Keywords

  • Mobile edge computing
  • distributed edge caching
  • dynamic requirements
  • mean-field game theory
  • optimal control

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