Title
A Novel Distributed Fog-Based Networked Architecture To Preserve Energy In Fog Data Centers
Abstract
The distinguishing feature of the Fog Computing (FC) paradigm is that FC spreads communication and computing resources over the wireless access network, so as to provide resource augmentation to resource and energy-limited wireless (possibly mobile) devices. Since FC would lead to substantial reductions in energy consumption and access latency, it will play a key role in the realization of the Fog of Everything (FoE) paradigm. The core challenge of the resulting FoE paradigm is to materialize the seamless convergence of three distinct disciplines, namely, broadband mobile communication, cloud computing, and Internet of Everything (IoE). In this paper, we present a new IoE architecture for FC in order to implement the resulting FoE technological platform. Then, we elaborate the related Quality of Service (QoS) requirements to be satisfied by the underlying FoE technological platform. Furthermore, in order to corroborate the conclusion that advancements in the envisioned architecture description, we present: (i) the proposed energy aware algorithm adopt Fog data center; and, (ii) the obtained numerical performance, for a real-world case study that shows that our approach saves energy consumption impressively in the Fog data Center compared with the existing methods and could be of practical interest in the incoming Fog of Everything (FoE) realm.
Year
DOI
Venue
2017
10.1109/MASS.2017.33
2017 IEEE 14TH INTERNATIONAL CONFERENCE ON MOBILE AD HOC AND SENSOR SYSTEMS (MASS)
Keywords
Field
DocType
Fog computing (FC), Internet of Everything (IoE), Fog of Everything (FoE), energy-efficiency, networked computing platform, distributed resource management
Software architecture description,Computer science,Server,Quality of service,Computer network,Data center,Energy consumption,Access network,Mobile telephony,Distributed computing,Cloud computing
Conference
ISSN
Citations 
PageRank 
2155-6806
2
0.35
References 
Authors
9
5
Name
Order
Citations
PageRank
Zahra Pooranian116810.72
Mohammad Shojafar255342.31
Paola Gabriela Vinueza Naranjo31656.72
Luca Chiaraviglio476855.95
Mauro Conti52430203.80