DocumentCode
731012
Title
An efficient coded multicasting scheme preserving the multiplicative caching gain
Author
Vettigli, Giuseppe ; Mingyue Ji ; Tulino, Antonia M. ; Llorca, Jaime ; Festa, Paola
Author_Institution
Univ. di Napoli Federico II, Naples, Italy
fYear
2015
fDate
April 26 2015-May 1 2015
Firstpage
251
Lastpage
256
Abstract
Coded multicasting has been shown to be a promising approach to significantly improve the caching performance of content delivery networks with multiple caches downstream of a common multicast link. However, achievable schemes proposed to date have been shown to achieve the proved order-optimal performance only in the asymptotic regime in which the number of packets per requested item goes to infinity. In this paper, we first extend the asymptotic analysis of the achievable scheme in [1], [2] to the case of heterogeneous cache sizes and demand distributions, providing the best known upper bound on the fundamental limiting performance when the number of packets goes to infinity. We then show that the scheme achieving this upper bound quickly loses its multiplicative caching gain for finite content packetization. To overcome this limitation, we design a novel polynomial-time algorithm based on random greedy graph-coloring that, while keeping the same finite content packetization, recovers a significant part of the multiplicative caching gain. Our results show that the order-optimal coded multicasting schemes proposed to date, while useful in quantifying the fundamental limiting performance, must be properly designed for practical regimes of finite packetization.
Keywords
cache storage; graph colouring; multicast communication; radio links; asymptotic analysis; content delivery network; demand distribution; finite content packetization; heterogeneous cache size; multicast link; multiplicative caching gain; order-optimal coded multicasting scheme; order-optimal performance; polynomial-time algorithm; random greedy graph coloring; Color; Complexity theory; Conferences; Encoding; Indexes; Multicast communication; Upper bound;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Communications Workshops (INFOCOM WKSHPS), 2015 IEEE Conference on
Conference_Location
Hong Kong
Type
conf
DOI
10.1109/INFCOMW.2015.7179393
Filename
7179393
Link To Document