Cognitive optical network testbed: EU project CHRON

Optical Communications and Networking, IEEE/OSA Journal of  (2015)

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摘要
The aim of cognition in optical networks is to introduce intelligence into the control plane that allows for autonomous end-to-end performance optimization and minimization of required human intervention, particularly targeted at heterogeneous network scenarios. A cognitive network observes, learns, and makes informed decisions based on its current status and knowledge about past decisions and their results. To test the operation of cognitive algorithms in real time, we created the first operational testbed of a cognitive optical network based on the Cognitive Heterogeneous Reconfigurable Optical Network (CHRON) architecture. In this experiment, an intelligent control plane, enabled by a cognitive decision system (CDS), was successfully combined with a flexible data plane. The testbed was used to test and validate different scenarios, demonstrating benefits obtained by network cognition, particularly lightpath establishment and a teardown scenario, improved failure restoration time, cognitive virtual topology reconfiguration, and a modulation format change.
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关键词
cognitive systems,computer network management,optical fibre networks,telecommunication computing,chron,eu project,autonomous end-to-end performance optimization,cognitive algorithms,cognitive decision system,cognitive heterogeneous reconfigurable optical network,cognitive network observer,cognitive optical network,cognitive virtual topology reconfiguration,control plane,failure restoration time,flexible data plane,heterogeneous network,human intervention minimization,modulation format change,network cognition,autonomous networks,cognitive optical networks,dynamic optical networks,optical communications,optical fibers,optical switches,bit error rate
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