Routing permutations and involutions on optical ring networks: complexity results and solution to an open problem

Given a network G and a demand D of communication requests on G, a routing for ( G , D ) is a set of directed paths of G, each from the source to the destination of one request of D. The Routing and Wavelength Assignment Problem seeks a routing R for ( G , D ) and an assignment of wavelengths to the...

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Published inJournal of discrete algorithms (Amsterdam, Netherlands) Vol. 5; no. 3; pp. 609 - 621
Main Authors Yuan, Jinjiang, Zhang, Jian Ying, Zhou, Sanming
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.09.2007
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Abstract Given a network G and a demand D of communication requests on G, a routing for ( G , D ) is a set of directed paths of G, each from the source to the destination of one request of D. The Routing and Wavelength Assignment Problem seeks a routing R for ( G , D ) and an assignment of wavelengths to the directed paths in R such that the number of wavelengths used is minimized, subject to that any two directed paths with at least one common arc receive distinct wavelengths. In the case where G is a ring, this problem is known as the Ring Routing and Wavelength Assignment Problem (RRWA). If in addition D is symmetric (that is, ( s , t ) ∈ D implies ( t , s ) ∈ D ) and the directed paths for requests ( s , t ) and ( t , s ) are required to be reverse of each other, then the problem is called the Symmetric Ring Routing and Wavelength Assignment Problem (SRRWA). A demand is called a permutation demand if, for each vertex v of G, the number of requests with source v and the number of requests with destination v are the same and are equal to 0 or 1. A symmetric permutation demand is called an involution demand. In this paper we prove that both RRWA and SRRWA are NP -complete even when restricted to involution demands. As a consequence RRWA is NP -complete when restricted to permutation demands. For general demands we prove that RRWA and SRRWA can be solved in polynomial time when the number of wavelengths is fixed. Finally, we answer in the negative an open problem posed by Gargano and Vaccaro and construct infinitely many counterexamples using involution demands.
AbstractList Given a network G and a demand D of communication requests on G, a routing for ( G , D ) is a set of directed paths of G, each from the source to the destination of one request of D. The Routing and Wavelength Assignment Problem seeks a routing R for ( G , D ) and an assignment of wavelengths to the directed paths in R such that the number of wavelengths used is minimized, subject to that any two directed paths with at least one common arc receive distinct wavelengths. In the case where G is a ring, this problem is known as the Ring Routing and Wavelength Assignment Problem (RRWA). If in addition D is symmetric (that is, ( s , t ) ∈ D implies ( t , s ) ∈ D ) and the directed paths for requests ( s , t ) and ( t , s ) are required to be reverse of each other, then the problem is called the Symmetric Ring Routing and Wavelength Assignment Problem (SRRWA). A demand is called a permutation demand if, for each vertex v of G, the number of requests with source v and the number of requests with destination v are the same and are equal to 0 or 1. A symmetric permutation demand is called an involution demand. In this paper we prove that both RRWA and SRRWA are NP -complete even when restricted to involution demands. As a consequence RRWA is NP -complete when restricted to permutation demands. For general demands we prove that RRWA and SRRWA can be solved in polynomial time when the number of wavelengths is fixed. Finally, we answer in the negative an open problem posed by Gargano and Vaccaro and construct infinitely many counterexamples using involution demands.
Author Zhang, Jian Ying
Yuan, Jinjiang
Zhou, Sanming
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Issue 3
Keywords Routing
Involution
Wavelength assignment
Permutation
Ring
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  ident: 10.1016/j.jda.2006.07.004_bib015
– volume: 14
  start-page: 377
  year: 2004
  ident: 10.1016/j.jda.2006.07.004_bib023
  article-title: Routing balanced communications on Hamiltonian decomposable networks
  publication-title: Parallel Processing Letters
  doi: 10.1142/S0129626404001969
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Snippet Given a network G and a demand D of communication requests on G, a routing for ( G , D ) is a set of directed paths of G, each from the source to the...
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elsevier
SourceType Enrichment Source
Index Database
Publisher
StartPage 609
SubjectTerms Involution
Permutation
Ring
Routing
Wavelength assignment
Title Routing permutations and involutions on optical ring networks: complexity results and solution to an open problem
URI https://dx.doi.org/10.1016/j.jda.2006.07.004
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