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A stochastic breakdown model for an unreliable web server system and an optimal admission control policy

Title
A stochastic breakdown model for an unreliable web server system and an optimal admission control policy
Authors
Cha J.H.Lee E.
Ewha Authors
차지환
SCOPUS Author ID
차지환scopus
Issue Date
2011
Journal Title
Journal of Applied Probability
ISSN
0021-9002JCR Link
Citation
Journal of Applied Probability vol. 48, no. 2, pp. 453 - 466
Indexed
SCI; SCIE; SCOPUS WOS scopus
Document Type
Article
Abstract
Web servers have to be protected against overload since overload can lead to a server breakdown, which in turn causes high response times and low throughput. In this paper, a stochastic model for breakdowns of server systems due to overload is proposed and an admission control policy which protects Web servers by controlling the amount and rate of work entering the system is studied. Requests from the clients arrive at the server following a nonhomogeneous Poisson process and each requested job takes a random time to be completed. It is assumed that the breakdown rate of the server depends on the number of jobs which are currently being performed by the server. Based on the proposed model, the reliability function and the breakdown rate function of the server system are derived. Furthermore, the long-run expected number of jobs completed per unit time is derived as the efficiency measure, and the optimal admission control policy which maximizes the efficiency will be discussed. © Applied Probability Trust 2011.
DOI
10.1239/jap/1308662638
Appears in Collections:
자연과학대학 > 통계학전공 > Journal papers
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