Polynomial Time Algorithm for Min-Ranks of Graphs with Simple Tree Structures

The min-rank of a graph was introduced by Haemers (Algebr. Methods Graph Theory 25:267–272, 1978 ) to bound the Shannon capacity of a graph. This parameter of a graph has recently gained much more attention from the research community after the work of Bar-Yossef et al. (in Proceedings of the 47th A...

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Published inAlgorithmica Vol. 71; no. 1; pp. 152 - 180
Main Authors Dau, Son Hoang, Chee, Yeow Meng
Format Journal Article
LanguageEnglish
Published Boston Springer US 01.01.2015
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ISSN0178-4617
1432-0541
DOI10.1007/s00453-013-9789-9

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Abstract The min-rank of a graph was introduced by Haemers (Algebr. Methods Graph Theory 25:267–272, 1978 ) to bound the Shannon capacity of a graph. This parameter of a graph has recently gained much more attention from the research community after the work of Bar-Yossef et al. (in Proceedings of the 47th Annual IEEE Symposium on Foundations of Computer Science (FOCS), pp. 197–206, 2006 ). In their paper, it was shown that the min-rank of a graph characterizes the optimal scalar linear solution of an instance of the Index Coding with Side Information (ICSI) problem described by the graph . It was shown by Peeters (Combinatorica 16(3):417–431, 1996 ) that computing the min-rank of a general graph is an NP-hard problem. There are very few known families of graphs whose min-ranks can be found in polynomial time. In this work, we introduce a new family of graphs with efficiently computed min-ranks. Specifically, we establish a polynomial time dynamic programming algorithm to compute the min-ranks of graphs having simple tree structures . Intuitively, such graphs are obtained by gluing together, in a tree-like structure, any set of graphs for which the min-ranks can be determined in polynomial time. A polynomial time algorithm to recognize such graphs is also proposed.
AbstractList The min-rank of a graph was introduced by Haemers (Algebr. Methods Graph Theory 25:267–272, 1978 ) to bound the Shannon capacity of a graph. This parameter of a graph has recently gained much more attention from the research community after the work of Bar-Yossef et al. (in Proceedings of the 47th Annual IEEE Symposium on Foundations of Computer Science (FOCS), pp. 197–206, 2006 ). In their paper, it was shown that the min-rank of a graph characterizes the optimal scalar linear solution of an instance of the Index Coding with Side Information (ICSI) problem described by the graph . It was shown by Peeters (Combinatorica 16(3):417–431, 1996 ) that computing the min-rank of a general graph is an NP-hard problem. There are very few known families of graphs whose min-ranks can be found in polynomial time. In this work, we introduce a new family of graphs with efficiently computed min-ranks. Specifically, we establish a polynomial time dynamic programming algorithm to compute the min-ranks of graphs having simple tree structures . Intuitively, such graphs are obtained by gluing together, in a tree-like structure, any set of graphs for which the min-ranks can be determined in polynomial time. A polynomial time algorithm to recognize such graphs is also proposed.
Author Dau, Son Hoang
Chee, Yeow Meng
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10.1109/TNET.2003.818197
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10.1109/FOCS.2007.48
10.1145/1151659.1159942
10.1145/1402946.1403004
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10.1109/TIT.1956.1056774
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Issue 1
Keywords Network coding
Min-rank
Tree structure
Index coding
Dynamic programming
Polynomial time
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Snippet The min-rank of a graph was introduced by Haemers (Algebr. Methods Graph Theory 25:267–272, 1978 ) to bound the Shannon capacity of a graph. This parameter of...
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Publisher
StartPage 152
SubjectTerms Algorithm Analysis and Problem Complexity
Algorithms
Computer Science
Computer Systems Organization and Communication Networks
Data Structures and Information Theory
Mathematics of Computing
Theory of Computation
Title Polynomial Time Algorithm for Min-Ranks of Graphs with Simple Tree Structures
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