Photonic device programmability in support of autonomous optical networks

The emergence and consolidation of increasingly programmable optical devices such as transceivers, amplifiers, multiplexers, or ROADMs-which allow their remote configuration and control by adopting software-defined networking principles such as model-driven development-is enabling the evolution towa...

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Bibliographic Details
Authors: Casellas R., Nadal L., Martinez R., Vilalta R., Munoz R., Svaluto Moreolo M.
Format: article
Status:Published version
Publication Date:2024
Country:España
Institution:Centre Tecnològic de Telecomunicacions de Catalunya (CTTC)
Repository:r-CTTC. Repositorio Institucional Producción Científica del Centre Tecnològic de Telecomunicacions de Catalunya (CTTC)
OAI Identifier:oai:cttc.fundanetsuite.com:p8446
Online Access:https://cttc.fundanetsuite.com/Publicaciones/ProdCientif/PublicacionFrw.aspx?id=8446
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85196951332&doi=10.1364%2fJOCN.521947&partnerID=40&md5=2f1fc087618e2d737f33d043fa70af51
Access Level:Open access
Keyword:Closed loop control systems
Fiber optic networks
Information management
Network layers
Photonic devices
Autonomous networks
Configuration and control
Mode of operations
Model-driven-development
Network condition
Operational modes
Photonics devices
Programmability
Software-defined networkings
Traffic conditions
Transceivers
Description
Summary:The emergence and consolidation of increasingly programmable optical devices such as transceivers, amplifiers, multiplexers, or ROADMs-which allow their remote configuration and control by adopting software-defined networking principles such as model-driven development-is enabling the evolution toward gradually more autonomous networks. Such networks leverage device programmability and are able to adapt and react to traffic and network condition changes, e.g., changing modes of operation or reconfiguring the network state, paving the way for the increased adoption of AI/ML models in support of enhanced network operation. In this paper, after a short review of some key elements in the control and orchestration systems of optical networks in support of autonomous networking, we present in detail a proof-of-concept validation of autonomous, closed-loop dynamic adaptation of transceiver operational modes. This includes (i) the design and development of an SDN agent of a multi-band sliceable bandwidth variable transceiver, based on extended OpenConfig terminal device data models; (ii) an SDN controller that performs discovery and management of transceivers- operational modes and maps to transport API (TAPI) profiles enabling efficient physical layer impairment-aware path computation; (iii) a dedicated externalized path computation element/digital twin that performs adaptation recommendations; and (iv) an MQTT-based telemetry platform for publisher/subscriber based state synchronization between the control plane functional entities to avoid systematic polling. © 2009-2012 Optica Publishing Group.