DocumentCode :
623567
Title :
Dynamic in-network caching for energy efficient content delivery
Author :
Llorca, Jaime ; Tulino, Antonia M. ; Guan, Ke ; Esteban, Jairo ; Varvello, Matteo ; Nakjung Choi ; Kilper, Daniel
Author_Institution :
Bell Labs., Alcatel-Lucent, Holmdel, NJ, USA
fYear :
2013
fDate :
14-19 April 2013
Firstpage :
245
Lastpage :
249
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 and varies 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 energy efficiency of the storage and transport resources. The energy efficient dynamic in-network caching problem aims at finding the evolution of the network configuration, in terms of the content objects being cached and transported over each network element at any given time, that meets user requests, satisfies network resource capacities and minimizes overall energy use. We provide 1) an information-centric optimization framework for the energy efficient dynamic in-network caching problem, 2) an offline solution, EE-OFD, based on an integer linear program (ILP) that obtains the maximum efficiency gains that can be achieved with global knowledge of user requests and network resources, and 3) an efficient fully distributed online solution, EEOND, that allows network nodes to make local caching decisions based on their current estimate of the global energy benefit. Our solutions take into account the network heterogeneity, in terms of capacity, energy efficiency and content popularity, and adapt to changing network conditions minimizing overall energy use.
Keywords :
cache storage; computer network management; integer programming; linear programming; EE-OFD; EEOND; ILP; content object request; content object storage; content object transport; dynamic in-network caching; dynamical content object creation; energy efficiency; energy efficient content delivery; energy use minimization; fully distributed online solution; information-centric optimization framework; integer linear program; local caching decision; maximum efficiency gain; media content prosumers; network conditions; network configuration; network heterogeneity; network nodes; network resource capacity; object popularity; transport resource; user request; Content distribution networks; Dynamic scheduling; Energy consumption; Internet; Optimization; Routing; Vegetation; Energy efficiency; content centric networking; content delivery network; distributed optimization; in-network caching; integer linear programming;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
INFOCOM, 2013 Proceedings IEEE
Conference_Location :
Turin
ISSN :
0743-166X
Print_ISBN :
978-1-4673-5944-3
Type :
conf
DOI :
10.1109/INFCOM.2013.6566772
Filename :
6566772
Link To Document :
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