DocumentCode
2149408
Title
A Fine-Grained Parameter Configuration Model for Failure Detection in Overlay Network Systems
Author
Cao, Jijun ; Su, Jinshu ; Wang, Yongjun ; Sun, Zhigang
Author_Institution
Sch. of Comput., Nat. Univ. of Defense Technol., Changsha
fYear
2008
fDate
30-31 Dec. 2008
Firstpage
580
Lastpage
585
Abstract
Failure detection is a significant challenge in most overlay network systems. And the choice of parameter configuration for a given failure detection scheme has a significant impact on the performance of the scheme. In the traditional coarse-grained parameter configuration (CGPC) model, the parameter configuration for each failure detecting process is uniform. In this paper, we analyze the disadvantages of CGPC model and then propose an alternate model, i.e. the fine-grained parameter configuration (FGPC) model, in which each detecting relationship is allocated with one independently configurable detecting process and the parameter configuration for each failure detecting process can be different. To make a tradeoff between detection time and probability of false positive for parameter configuration policies, we propose a new evaluation criterion, i.e. detection loss. Based on FGPC model, we discuss the two approaches, i.e. common approach and heuristic approach, to choose an optimal parameter configuration policy for failure detection scheme. Finally we show how to apply the FGPC model to a probe-based failure detection scheme in application-layer multicast systems as an example.
Keywords
Internet; failure analysis; multicast communication; telecommunication network topology; coarse-grained parameter configuration model; failure detection; fine-grained parameter configuration model; multicast systems; overlay network systems; Condition monitoring; Heart beat; IP networks; Information technology; Multimedia systems; Peer to peer computing; Probes; Resilience; Sun; Web and internet services; failure detection; fine-grained; overlay multicast systems; parameter configuration;
fLanguage
English
Publisher
ieee
Conference_Titel
MultiMedia and Information Technology, 2008. MMIT '08. International Conference on
Conference_Location
Three Gorges
Print_ISBN
978-0-7695-3556-2
Type
conf
DOI
10.1109/MMIT.2008.155
Filename
5089190
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