A $(1.4 + Ξ΅)$-approximation algorithm for the $2$-Max-Duo problem
February 21, 2017 Β· Declared Dead Β· + Add venue
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Authors
Yao Xu, Yong Chen, Guohui Lin, Tian Liu, Taibo Luo, Peng Zhang
arXiv ID
1702.06256
Category
cs.DS: Data Structures & Algorithms
Citations
0
Last Checked
5 months ago
Abstract
The maximum duo-preservation string mapping (Max-Duo) problem is the complement of the well studied minimum common string partition (MCSP) problem, both of which have applications in many fields including text compression and bioinformatics. $k$-Max-Duo is the restricted version of Max-Duo, where every letter of the alphabet occurs at most $k$ times in each of the strings, which is readily reduced into the well known maximum independent set (MIS) problem on a graph of maximum degree $Ξ\le 6(k-1)$. In particular, $2$-Max-Duo can then be approximated arbitrarily close to $1.8$ using the state-of-the-art approximation algorithm for the MIS problem. $2$-Max-Duo was proved APX-hard and very recently a $(1.6 + Ξ΅)$-approximation was claimed, for any $Ξ΅> 0$. In this paper, we present a vertex-degree reduction technique, based on which, we show that $2$-Max-Duo can be approximated arbitrarily close to $1.4$.
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