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Reactive Robust Routing: Anomaly Localization and Routing Reconfiguration for Dynamic Networks

Reactive Robust Routing: Anomaly Localization and Routing Reconfiguration for Dynamic Networks
This paper presents a novel approach to deal with dynamic and highly uncertain traffic in dynamic network scenarios. The Reactive Robust Routing (RRR) approach is introduced, a combination of proactive and reactive techniques to improve network efficiency and robustness, simplifying network operation. RRR optimizes routing for normal-operation traffic, using a time-varying extension of the already established Robust Routing technique that outperforms the stable approach. To deal with anomalous and unexpected traffic variations, RRR uses a fast anomaly detection and localization algorithm that rapidly detects and localizes abrupt changes in traffic flows, permitting an accurate routing adaptation. This algorithm presents well-established optimality properties in terms of detection/localization rates and localization delay, which allows for generalization of results, independently of particular evaluations. The algorithm is based on a novel parsimonious model for traffic demands which allows for detection of anomalies using easily available aggregated-traffic measurements, reducing the overheads of data collection.
[SPI.SIGNAL] Engineering Sciences/Signal and Image processing, [STAT.AP]Statistics [stat]/Applications [stat.AP], [ INFO.INFO-TS ] Computer Science [cs]/Signal and Image Processing, [INFO.INFO-NI] Computer Science [cs]/Networking and Internet Architecture [cs.NI], [INFO.INFO-TS] Computer Science [cs]/Signal and Image Processing, [ INFO.INFO-NI ] Computer Science [cs]/Networking and Internet Architecture [cs.NI], [ STAT.AP ] Statistics [stat]/Applications [stat.AP], [STAT.AP] Statistics/Applications, [ SPI.SIGNAL ] Engineering Sciences [physics]/Signal and Image processing, [INFO.INFO-NI] Computer Science/Networking and Internet Architecture, [INFO.INFO-TS] Computer Science/Signal and Image Processing, [INFO.INFO-NI]Computer Science [cs]/Networking and Internet Architecture [cs.NI], [STAT.AP] Statistics [stat]/Applications [stat.AP], [INFO.INFO-TS]Computer Science [cs]/Signal and Image Processing, [SPI.SIGNAL]Engineering Sciences [physics]/Signal and Image processing, [SPI.SIGNAL] Engineering Sciences [physics]/Signal and Image processing
[SPI.SIGNAL] Engineering Sciences/Signal and Image processing, [STAT.AP]Statistics [stat]/Applications [stat.AP], [ INFO.INFO-TS ] Computer Science [cs]/Signal and Image Processing, [INFO.INFO-NI] Computer Science [cs]/Networking and Internet Architecture [cs.NI], [INFO.INFO-TS] Computer Science [cs]/Signal and Image Processing, [ INFO.INFO-NI ] Computer Science [cs]/Networking and Internet Architecture [cs.NI], [ STAT.AP ] Statistics [stat]/Applications [stat.AP], [STAT.AP] Statistics/Applications, [ SPI.SIGNAL ] Engineering Sciences [physics]/Signal and Image processing, [INFO.INFO-NI] Computer Science/Networking and Internet Architecture, [INFO.INFO-TS] Computer Science/Signal and Image Processing, [INFO.INFO-NI]Computer Science [cs]/Networking and Internet Architecture [cs.NI], [STAT.AP] Statistics [stat]/Applications [stat.AP], [INFO.INFO-TS]Computer Science [cs]/Signal and Image Processing, [SPI.SIGNAL]Engineering Sciences [physics]/Signal and Image processing, [SPI.SIGNAL] Engineering Sciences [physics]/Signal and Image processing
2 Research products, page 1 of 1
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