DocumentCode :
2888225
Title :
Scalable constructions of fractional repetition codes in distributed storage systems
Author :
Koo, Joseph C. ; Gill, John T.
Author_Institution :
Dept. of Electr. Eng., Stanford Univ., Stanford, CA, USA
fYear :
2011
fDate :
28-30 Sept. 2011
Firstpage :
1366
Lastpage :
1373
Abstract :
In distributed storage systems built using commodity hardware, it is necessary to have data redundancy in order to ensure system reliability. In such systems, it is also often desirable to be able to quickly repair storage nodes that fail. We consider a scheme - introduced by El Rouayheb and Ramchandran - which uses combinatorial block design in order to design storage systems that enable efficient (and exact) node repair. In this work, we investigate systems where node sizes may be much larger than replication degrees, and explicitly provide algorithms for constructing these storage designs. Our designs, which are related to projective geometries, are based on the construction of bipartite cage graphs (with girth 6) and the concept of mutually-orthogonal Latin squares. Via these constructions, we can guarantee that the resulting designs require the fewest number of storage nodes for the given parameters, and can further show that these systems can be easily expanded without need for frequent reconfiguration.
Keywords :
distributed processing; geometry; graph theory; storage management; bipartite cage graphs; combinatorial block design; data redundancy; distributed storage systems; fractional repetition codes; mutually-orthogonal Latin squares; node repair; projective geometry; system reliability; Algorithm design and analysis; Bandwidth; Bipartite graph; Distributed databases; Geometry; Maintenance engineering; System analysis and design;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communication, Control, and Computing (Allerton), 2011 49th Annual Allerton Conference on
Conference_Location :
Monticello, IL
Print_ISBN :
978-1-4577-1817-5
Type :
conf
DOI :
10.1109/Allerton.2011.6120326
Filename :
6120326
Link To Document :
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