Grafting Arborescences for Extra Resilience of Fast Rerouting Schemes
Klaus-Tycho Foerster, Andrzej Kamisinski, Yvonne-Anne Pignolet, Stefan Schmid, Gilles Trédan
摘要
To provide a high availability and to be able to quickly react to link failures, most communication networks feature fast rerouting (FRR) mechanisms in the data plane. However, configuring these mechanisms to provide a high resilience against multiple failures is algorithmically challenging, as rerouting rules can only depend on local failure information and need to be pre-defined. This paper is motivated by the observation that the common approach to design fast rerouting algorithms, based on spanning trees and covering arborescences, comes at a cost of reduced resilience as it does not fully exploit the available links in heterogeneous topologies. We present several novel fast rerouting algorithms which are not limited by spanning trees, but rather extend and combine ("graft") multiple spanning arborescences to improve resilience. We compare our algorithms analytically and empirically, and show that they can significantly improve not only the resilience, but also accelerate the preprocessing to generate the local fast failover rules.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了最后一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
引用它的顶会 Paper1
问问它们各自怎么用它它引用的顶会 Paper1
相关 Paper
- Perfect Routing Arborescences for Fast ReroutePéter Babarczi, János TapolcaiINFOCOM 2026
- SyPer: Synthesis of Perfectly Resilient Local Fast Re-Routing Rules for Highly Dependable NetworksCsaba Györgyi, Kim G. Larsen, Stefan Schmid, Jirí SrbaINFOCOM 2024 · 被引用 4 次
- Perfect Network Resilience in Polynomial TimeMatthias Bentert, Stefan SchmidSTOC 2026 · 被引用 1 次
- Finding Minimum-Weight Link-Disjoint Paths with a Few Common NodesBinglin Tao, Mingyu Xiao, Jingyang ZhaoAAAI 2020 · 被引用 3 次
- Polynomial-Time Algorithm for the Regional SRLG-disjoint Paths ProblemBalázs Vass, Erika R. Bérczi-Kovács, Ábel Barabás, Zsombor L. Hajdú 等INFOCOM 2022 · 被引用 11 次
