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Vertex Disjoint Paths for Dispatching in Railways
Author(s) -
Holger Flier,
Matúš Mihaľák,
Anita Schöbel,
Peter Widmayer,
Anna Zych-Pawlewicz
Publication year - 2010
Publication title -
research publications (maastricht university)
Language(s) - English
Resource type - Conference proceedings
DOI - 10.4230/oasics.atmos.2010.61
Subject(s) - disjoint sets , vertex (graph theory) , maximization , combinatorics , routing (electronic design automation) , approximation algorithm , computer science , planar , planar graph , set (abstract data type) , mathematics , mathematical optimization , discrete mathematics , graph , computer network , computer graphics (images) , programming language
We study variants of the vertex disjoint paths problem in planar graphs where paths have to be selected from a given set of paths. We study the problem as a decision, maximization, and routing-in-rounds problem. Although all considered variants are NP-hard in planar graphs, restrictions on the location of the terminals, motivated by railway applications, lead to polynomially solvable cases for the decision and maximization versions of the problem, and to a $p$-approximation algorithm for the routing-in-rounds problem, where $p$ is the maximum number of alternative paths for a terminal pair.

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