DocumentCode
590959
Title
Enhanced 3-layer hierarchical replication algorithm for Data Grid
Author
Mansouri, N. ; Dastghaibyfard, GholamHossin
Author_Institution
Dept. of Comput. Sci. & Eng., Shiraz Univ., Shiraz, Iran
fYear
2011
fDate
13-14 Oct. 2011
Firstpage
297
Lastpage
302
Abstract
In Data Grid, large quantity of data files are generated and many users around the world need to access such data for their research and experiments. Replication is a key optimization technique to manage such a huge amount of data by replicating data in multiple grid sites. Replication goals are how to decrease bandwidth consumption, improve fault tolerance, and enhance scalability. Due to dynamic network characteristic and user behavior the main challenges are when and where to replicate data in order to achieve replication goals. Other challenges are improvement of data access efficiency since number and size of storage devices available in grid are limited while large sizes of data files are produced. In this paper, the performance of the 3-layer hierarchical replication algorithm is enhanced by placing the replica in the appropriate sites i.e. best site that has the highest number of access for that particular replica and uses an economic model for file deletion when there is not enough space for replica. The economic model is based on future value of a data file. The proposed algorithm is implemented by OptorSim, European Data Grid simulator. Experiment results show that the proposed strategy achieves better performance by minimizing the data access time and avoiding unnecessary replication.
Keywords
file organisation; grid computing; information retrieval; minimisation; software fault tolerance; software performance evaluation; 3-layer hierarchical replication algorithm; European Data Grid simulator; OptorSim; bandwidth consumption reduction; data access efficiency improvement; data access time minimization; data files; data replication; dynamic network characteristics; economic model; fault tolerance improvement; file deletion; optimization technique; performance enhancement; scalability enhancement; storage devices; user behavior; Bandwidth; Computational modeling; Data models; Distributed databases; Economics; Local area networks; Optimization; Data Grid; Replication; Simulation;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer and Knowledge Engineering (ICCKE), 2011 1st International eConference on
Conference_Location
Mashhad
Print_ISBN
978-1-4673-5712-8
Type
conf
DOI
10.1109/ICCKE.2011.6413368
Filename
6413368
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