DocumentCode :
606796
Title :
SRLG-diverse routing with the star property
Author :
Bermond, Jean-Claude ; Coudert, D. ; D´Angelo, Giuseppe ; Moataz, F.Z.
Author_Institution :
Mascotte Project - INRIA, Univ. Nice Sophia, Sophia Antipolis, France
fYear :
2013
fDate :
4-7 March 2013
Firstpage :
163
Lastpage :
170
Abstract :
The notion of Shared Risk Link Groups (SRLG) has been introduced to capture survivability issues where some links of a network fail simultaneously. In this context, the diverse routing problem is to find a set of pairwise SRLG-disjoint paths between a given pair of end nodes of the network. This problem has been proved NP-complete in general and some polynomial instances have been characterized. In this paper, we investigate the diverse routing problem in networks where the SRLGs are localized and satisfy the star property [1]. This property states that a link may be subject to several SRLGs, but all links subject to a given SRLG are incident to a common node. We first provide counterexamples to the polynomial time algorithm proposed in [1] for computing a pair of SRLG-disjoint paths in networks with SRLGs satisfying the star property, and then prove that this problem is in fact NP-complete. Then, we devise polynomial time algorithms for practically relevant subcases, in particular when the number of SRLGs is constant, the maximum degree of the vertices is at most 4, and when the network is a directed acyclic graph. Finally we consider the problem of finding the maximum number of SRLG-disjoint paths in networks with SRLGs satisfying the star property. We prove that such problem is NP-hard and hard to approximate. Then, we provide exact and approximation algorithms for relevant subcases.
Keywords :
optimisation; polynomials; telecommunication links; telecommunication network reliability; telecommunication network routing; NP-complete; SRLG-disjoint path; SRLG-diverse routing; directed acyclic graph; diverse routing problem; network node; polynomial time algorithm; shared risk link group; star property; Approximation algorithms; Color; Complexity theory; Context; Lead; Polynomials; Routing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Design of Reliable Communication Networks (DRCN), 2013 9th International Conference on the
Conference_Location :
Budapest
Print_ISBN :
978-1-4799-0049-7
Type :
conf
Filename :
6529856
Link To Document :
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