Litcius/Paper detail

Capacity-Aware Edge Caching in Fog Computing Networks

Qiang Li, Yuanmei Zhang, Yingyu Li, Yong Xiao, Xiaohu Ge

2020IEEE Transactions on Vehicular Technology51 citationsDOI

Abstract

This article studies edge caching in fog computing networks, where a capacity-aware edge caching framework is proposed by considering both the limited fog cache capacity and the connectivity capacity of base stations (BSs). By allowing cooperation between fog nodes and cloud data center, the average-download-time (ADT) minimization problem is formulated as a multi-class processor queuing process. We prove the convexity of the formulated problem and propose an Alternating Direction Method of Multipliers (ADMM)-based algorithm that can achieve the minimum ADT and converge much faster than existing algorithms. Simulation results demonstrate that the allocation of fog cache capacity and BS connectivity capacity needs to be balanced to take the full advantage of edge caching. While the maximization of the edge-cache-hit-ratio (ECHR) by utilizing all available fog cache capacity is helpful when the BS connectivity capacity is sufficient, it is preferable to keep a lower ECHR and allocate more traffic to the cloud when the BS connectivity capacity is deficient.

Topics & Concepts

CacheComputer scienceCloud computingEnhanced Data Rates for GSM EvolutionComputer networkEdge deviceQueueing theoryBase stationCapacity planningCache algorithmsEdge computingDistributed computingCPU cacheOperating systemTelecommunicationsCaching and Content DeliveryCooperative Communication and Network CodingAdvanced Wireless Communication Technologies