English

Node-Disjoint Multipath Spanners and their Relationship with Fault-Tolerant Spanners

Networking and Internet Architecture 2011-09-19 v2 Discrete Mathematics

Abstract

Motivated by multipath routing, we introduce a multi-connected variant of spanners. For that purpose we introduce the pp-multipath cost between two nodes uu and vv as the minimum weight of a collection of pp internally vertex-disjoint paths between uu and vv. Given a weighted graph GG, a subgraph HH is a pp-multipath ss-spanner if for all u,vu,v, the pp-multipath cost between uu and vv in HH is at most ss times the pp-multipath cost in GG. The ss factor is called the stretch. Building upon recent results on fault-tolerant spanners, we show how to build pp-multipath spanners of constant stretch and of \tO(n1+1/k)\tO(n^{1+1/k}) edges, for fixed parameters pp and kk, nn being the number of nodes of the graph. Such spanners can be constructed by a distributed algorithm running in O(k)O(k) rounds. Additionally, we give an improved construction for the case p=k=2p=k=2. Our spanner HH has O(n3/2)O(n^{3/2}) edges and the pp-multipath cost in HH between any two node is at most twice the corresponding one in GG plus O(W)O(W), WW being the maximum edge weight.

Keywords

Cite

@article{arxiv.1109.2696,
  title  = {Node-Disjoint Multipath Spanners and their Relationship with Fault-Tolerant Spanners},
  author = {Cyril Gavoille and Quentin Godfroy and Laurent Viennot},
  journal= {arXiv preprint arXiv:1109.2696},
  year   = {2011}
}