DocumentCode
1912806
Title
Analysis of wireless information locality and association patterns in a campus
Author
Chinchilla, Francisco ; Lindsey, Mark ; Papadopouli, Maria
Author_Institution
Dept. of Comput. Sci., North Carolina Univ., Chapel Hill, NC, USA
Volume
2
fYear
2004
fDate
7-11 March 2004
Firstpage
906
Abstract
Our goal is to explore characteristics of the environment that provide opportunities for caching, prefetching, coverage planning, and resource reservation. We conduct a one-month measurement study of locality phenomena among wireless Web users and their association patterns on a major university campus using the IEEE 802.11 wireless infrastructure. We evaluate the performance of different caching paradigms, such as single user cache, cache attached to an access point (AP), and peer-to-peer caching. In several settings such caching mechanisms could be beneficial. Unlike other measurement studies in wired networks in which 25% to 40% of documents draw 70% of Web access, our traces indicate that 13% of unique URLS draws this number of Web accesses. In addition, the overall ideal hit ratio of the user cache, cache attached to an access point, and peer-to-peer caching paradigms (where peers are coresident within an AP) are 51%, 55%, and 23%, respectively. We distinguish wireless clients based on their inter-building mobility, their visits to APs, their continuous walks in the wireless infrastructure, and their wireless information access during these periods. We model the associations as a Markov chain using as state information the most recent AP visits. We can predict with high probability (86%) the next AP with which a wireless client will associate. Also, there are APs with a high percentage of user revisits. Such measurements can benefit protocols and algorithms that aim to improve the performance of the wireless infrastructures by load balancing, admission control, and resource reservation across APs.
Keywords
Internet; Markov processes; cache storage; client-server systems; peer-to-peer computing; radio access networks; wireless LAN; Markov chain; coverage planning; major university campus; peer-to-peer caching; resource reservation; single user cache; wireless Web users; wireless association patterns; wireless clients; wireless information access; wireless information locality; Access protocols; Cooperative caching; Delay; Information analysis; Internet; Pattern analysis; Peer to peer computing; Prefetching; Wireless application protocol; Wireless networks;
fLanguage
English
Publisher
ieee
Conference_Titel
INFOCOM 2004. Twenty-third AnnualJoint Conference of the IEEE Computer and Communications Societies
ISSN
0743-166X
Print_ISBN
0-7803-8355-9
Type
conf
DOI
10.1109/INFCOM.2004.1356978
Filename
1356978
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