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Approximability of 3- and 4-hop bounded disjoint paths problems

  • TU Berlin

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

A path is said to be ℓ-bounded if it contains at most ℓ edges. We consider two types of ℓ-bounded disjoint paths problems. In the maximum edge- or node-disjoint path problems MEDP(ℓ) and MNDP(ℓ), the task is to find the maximum number of edge- or node-disjoint ℓ-bounded (s,t)-paths in a given graph G with source s and sink t, respectively. In the weighted edge- or node-disjoint path problems WEDP(ℓ) and WNDP(ℓ), we are also given an integer k ∈ ℕ and non-negative edge weights ce ∈ ℕ, e ∈ E, and seek for a minimum weight subgraph of G that contains k edge- or node-disjoint ℓ-bounded (s,t)-paths. Both problems are of great practical relevance in the planning of fault-tolerant communication networks, for example. Even though length-bounded cut and flow problems have been studied intensively in the last decades, the -hardness of some 3- and 4-bounded disjoint paths problems was still open. In this paper, we settle the complexity status of all open cases showing that WNDP(3) can be solved in polynomial time, that MEDP(4) is -complete and approximable within a factor of 2, and that WNDP(4) and WEDP(4) are -hard and -complete, respectively.

Original languageEnglish
Title of host publicationInteger Programming and Combinatorial Optimization - 14th International Conference, IPCO 2010, Proceedings
Pages205-218
Number of pages14
DOIs
Publication statusPublished - 14 Jul 2010
Event14th International Conference on Integer Programming and Combinatorial Optimization, IPCO 2010 - Lausanne, China
Duration: 9 Jun 201011 Jun 2010

Publication series

NameLecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics)
Volume6080 LNCS
ISSN (Print)0302-9743
ISSN (Electronic)1611-3349

Conference

Conference14th International Conference on Integer Programming and Combinatorial Optimization, IPCO 2010
Country/TerritoryChina
CityLausanne
Period9/06/1011/06/10

Keywords

  • Graph algorithms
  • approximation algorithms
  • complexity
  • length-bounded paths

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