DocumentCode
2015814
Title
Capacity of distributed content delivery in large-scale wireless ad hoc networks
Author
Liu, Wang ; Lu, Kejie ; Wang, Jianping ; Qian, Yi ; Zhang, Tao ; Huang, Liusheng
Author_Institution
Univ. of Sci. & Technol. of China, Hefei, China
fYear
2012
fDate
25-30 March 2012
Firstpage
19
Lastpage
27
Abstract
In most existing wireless networks, end users obtain data content from the wired network, typically, the Internet. In this manner, virtually all of their traffic must go through a few access points, which implies that the capacity of wireless network is limited by the aggregated transmission data rate of these access points. To fully exploit the capability of wireless network, we envision that future wireless networks shall be able to provide data content within themselves. In this paper, we address the behavior of such networks from a theoretical perspective. Specifically, we consider that multicast is used for distributed content delivery, and we investigate the asymptotic upper bound of the throughput capacity for distributed content delivery in large-scale wireless ad hoc networks (DCD-WANET). Our analysis shows how the upper bound of throughput capacity is affected by the geometric size of the network, the number of data items, the popularity of the data content, and the number of storage nodes that contain those data items. In particular, our theoretical results show that, if the number of storage nodes exceed a critical threshold, the upper bound grows with the number of storage nodes, according to a power-law where the scaling exponent depends on the popularity of data items. We also provide the data item placement strategy to achieve the upper bound of throughput capacity for DCD-WANET.
Keywords
Internet; ad hoc networks; computer networks; distributed processing; multicast communication; asymptotic upper bound; data item placement strategy; distributed content delivery capacity; large scale wireless ad hoc networks; multicast communication; power law; storage nodes; Base stations; Internet; Mobile ad hoc networks; Peer to peer computing; Throughput; Upper bound; Wireless networks;
fLanguage
English
Publisher
ieee
Conference_Titel
INFOCOM, 2012 Proceedings IEEE
Conference_Location
Orlando, FL
ISSN
0743-166X
Print_ISBN
978-1-4673-0773-4
Type
conf
DOI
10.1109/INFCOM.2012.6195579
Filename
6195579
Link To Document