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Improved Fast Rerouting Using Postprocessing

delete2022-01-01
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OA
AI
K
Klaus-Tycho Foerster *
A
Andrzej Kamisiński
Y
Yvonne-Anne Pignolet
S
Stefan Schmid
G
Gilles Trédan
DOI:10.1109/TDSC.2020.2998019delete
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Abstract

Abstract

En 中文
To provide fast traffic recovery upon failures, most modern networks support static Fast Rerouting (FRR) mechanisms for mission critical services. However, configuring FRR mechanisms to tolerate multiplefailures poses challenging algorithmic problems. While state-of-the-art solutions leveraging arc-disjoint arborescence-based network decompositions ensure that failover routes always reach their destinations eventually, even under multiple concurrent failures, these routes may be long and introduce unnecessary loads; moreover, they are tailored to worst-case failure scenarios. This article presents an algorithmic framework for improving a given FRR network decomposition, using postprocessing. In particular, our framework is based on iterative arc swapping strategies and supports a number of use cases, from strengthening the resilience (e.g., in the presence of shared risk link groups) to improving the quality of the resulting routes (e.g., reducing route lengths and induced loads). Our simulations show that postprocessing is indeed beneficial in various scenarios, and can therefore enhance today's approaches.
Keywords:
Routing
Additives
Resilience
Load modeling
Communication networks
Focusing
Mission critical systems
Resilience
fault-tolerance
computer networks
failover
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Journal

IEEE Transactions on Dependable and Secure Computing cover
IEEE Transactions on Dependable and Secure Computing
IF:
7.5
Papers:
2.5K
Citations:
9.6K

Organization

A
AGH University of Krakow
Scholars:
9.2K
Papers: 9.4K
Citations: 1.2W
C
centre national de la recherche scientifique (cnrs)
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Citations: 279
U
University of Vienna
Scholars:
1.7W
Papers: 1.6W
Citations: 40
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