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Monitoring Cycles for Fault Detection in Meshed All-Optical Networks
Montreal, Quebec, Canada August 15-August 18
DOI Bookmark: http://doi.ieeecomputersociety.org/10.1109/ICPPW.2004.13280512004 International Conference on Para ...
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Hongqing Zeng, Carleton University
Changcheng Huang, Carleton University
Alex Vukovic, Communications Research Centre Canada

Fault detection is critical for all-optical networks (AONs). This paper introduces the concept of monitoring cycle and proposes a fault detection mechanism based on decomposing AONs into a set of cycles (a cycle cover), in which each one is defined as a monitoring cycle. Two cycle-finding algorithms are developed and compared for the proposed fault detection mechanism: heuristic depth first searching (HDFS) and shortest path Eulerian matching (SPEM). The degradation of wavelength utilization and the cardinality of cycle covers are analyzed for evaluating the proposed mechanism.

The proposed mechanism is applied to four network examples: NSFNET, ARPA2, SmallNet and Bellcore. The evaluation results show that the proposed fault detection mechanism is effective and cost efficient.

Citation:
Hongqing Zeng, Changcheng Huang, Alex Vukovic, "Monitoring Cycles for Fault Detection in Meshed All-Optical Networks," icppw, pp.434-439, 2004 International Conference on Parallel Processing Workshops (ICPPW'04), 2004
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