DocumentCode :
1757167
Title :
Characterizing the Rate Region of the (4,3,3) Exact-Repair Regenerating Codes
Author :
Chao Tian
Author_Institution :
AT&T Labs.-Res., Bedminster, NJ, USA
Volume :
32
Issue :
5
fYear :
2014
fDate :
41760
Firstpage :
967
Lastpage :
975
Abstract :
Exact-repair regenerating codes are considered for the case (n,k,d) = (4,3,3), for which a complete characterization of the rate region is provided. This characterization answers in the affirmative the open question whether there exists a non-vanishing gap between the optimal bandwidth-storage tradeoff of the functional-repair regenerating codes (i.e., the cut-set bound) and that of the exact-repair regenerating codes. To obtain an explicit information theoretic converse, a computer-aided proof (CAP) approach based on primal and dual relation is developed. This CAP approach extends Yeung´s linear programming (LP) method, which was previously only used on information theoretic problems with a few random variables due to the exponential growth of the number of variables in the corresponding LP problem. The symmetry in the exact-repair regenerating code problem allows an effective reduction of the number of variables, and together with several other problem-specific reductions, the LP problem is reduced to a manageable scale. For the achievability, only one non-trivial corner point of the rate region needs to be addressed in this case, for which an explicit binary code construction is given.
Keywords :
binary codes; linear programming; (4,3,3) exact-repair regenerating codes; CAP approach; LP method; Yeung linear programming method; computer-aided proof approach; explicit binary code construction; explicit information theoretic converse; functional-repair regenerating codes; optimal bandwidth-storage tradeoff; rate region characterization; Bandwidth; Decoding; Entropy; Joints; Maintenance engineering; Optimization; Random variables; Data storage systems; information entropy;
fLanguage :
English
Journal_Title :
Selected Areas in Communications, IEEE Journal on
Publisher :
ieee
ISSN :
0733-8716
Type :
jour
DOI :
10.1109/JSAC.2014.140516
Filename :
6804941
Link To Document :
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