DocumentCode
3607393
Title
Energy Efficient Dynamic Content Distribution
Author
Llorca, Jaime ; Tulino, Antonia M. ; Varvello, Matteo ; Esteban, Jairo ; Perino, Diego
Author_Institution
Bell Labs., Alcatel-Lucent, Holmdel, CA, USA
Volume
33
Issue
12
fYear
2015
Firstpage
2826
Lastpage
2836
Abstract
Consider a network of prosumers of media content in which users dynamically create and request content objects. The request process is governed by the objects´ popularity, which may vary across network regions and over time. In order to meet user requests, content objects can be stored and transported over the network, characterized by the capacity and efficiency of its storage and transport resources. The energy-efficient dynamic content distribution problem aims at finding the evolution of the network configuration, in terms of the placement and routing of content objects over time, that meets user requests, satisfies network resource capacities and minimizes overall energy use. We present 1) an information-centric linear programming formulation for the energy efficient dynamic content distribution problem that captures multicasting and caching over the network, per-object system dynamics, and delivery deadlines; 2) an offline solution that characterizes the minimum energy use achievable with global knowledge of user requests and network resources; and 3) an efficient distributed online solution that allows network nodes to make caching decisions based on their local estimate of the global energy benefit. Using a custom-built content distribution network simulator as well as a real prototype implementation in an information-centric networking testbed, we show the significant energy savings that can be obtained via the efficient and lightweight cache cooperation induced by our service and energy aware distributed online solution with respect to state of the art approaches.
Keywords
Internet; cache storage; content management; linear programming; storage management; user interfaces; caching decisions; energy aware distributed online solution; energy efficient dynamic content distribution; information-centric linear programming formulation; lightweight cache cooperation; media content; network resource capacities; network resources; storage resources; transport resources; user requests; Dynamic scheduling; Electronic mail; Energy consumption; Energy storage; Heuristic algorithms; Routing; Vegetation; Energy efficiency; content distribution; cooperative caching; information centric networking;
fLanguage
English
Journal_Title
Selected Areas in Communications, IEEE Journal on
Publisher
ieee
ISSN
0733-8716
Type
jour
DOI
10.1109/JSAC.2015.2485618
Filename
7286754
Link To Document