Distributed Network Tomography for Failure Localization
Federico Trombetti, Viviana Arrigoni, Novella Bartolini
Abstract
In today's complex and interconnected networks, efficiently and accurately identifying performance degradation and failures is essential for service management, application performance, and network reconnaissance. Network Tomography can infer the state of the internal elements of the network via end-to-end measurements from the periphery of the network. Existing solutions rely on a centralized approach where the measures taken by the monitors are processed and analyzed by a central unit, or they assume that monitors can share all the information gained by communicating through a different, independent and non-faulty network. In this paper, we present D2NeT (Distributed and Dynamic Network Tomography) an innovative approach to network monitoring that extends the principles of network tomography by enabling a real-time and decentralized monitoring solution. We propose a framework based on distributed interactions among monitoring nodes, incorporating an advanced Bayesian decision-making support system. We validate our solution by testing it on emulated networks showing that it outperforms other baseline and state-of-the-art solutions in static failure scenarios. We then considered D2NeT in a dynamic scenario with ongoing failures and restorations, demonstrating its exceptional ability to promptly detect sudden changes in the nodes' state.
Ask about this paper
Ask your agent about it.
Lune has read the top-tier papers around this one, so every answer names the papers it rests on.
Your agent calls
Lunesearch_papers
Free to start. No credit card required.
Terminal
Install the CLIlune papers get d7691cea-47a9-4754-909f-68ec3c3c86cdRelated papers
- Failure Localization through Progressive Network TomographyViviana Arrigoni, Novella Bartolini, Annalisa Massini, Federico TrombettiINFOCOM 2021 · 16 citations
- Bound-based Network Tomography for Inferring Interesting Link MetricsHuikang Li, Yi Gao, Wei Dong, Chun ChenINFOCOM 2020 · 7 citations
- Network Tomography based on Adaptive Measurements in Probabilistic RoutingHiroki Ikeuchi, Hiroshi Saito, Kotaro MatsudaINFOCOM 2022 · 8 citations
- Stealthy DGoS Attack: DeGrading of Service under the Watch of Network TomographyCho-Chun Chiu, Ting HeINFOCOM 2020 · 11 citations
- Tomography-based progressive network recovery and critical service restoration after massive failuresViviana Arrigoni, Matteo Prata, Novella BartoliniINFOCOM 2023 · 3 citations
