Experimental demonstration of a metro area network with terabit-capable sliceable bit-rate-variable transceivers using directly modulated VCSELs and coherent detection

Author:

Fabrega J. M.1ORCID,Vílchez F. J.1ORCID,Svaluto Moreolo M.1ORCID,Martínez R.1ORCID,Quispe A.1,Nadal L.1ORCID,Casellas R.1ORCID,Vilalta R.1ORCID,Muñoz R.1ORCID,Neumeyr C.2,Lee S. Y.3,Shin J. U.3,Jung H. D.3,Mariani G.4,Heuvelmans R.4,Gatto A.5ORCID,Parolari P.5ORCID,Boffi P.5,Tessema N. M.6,Calabretta N.6,Larrabeiti D.7ORCID,Fernández-Palacios J. P.8

Affiliation:

1. Centre Tecnologic de Telecomunicacions de Catalunya (CTTC/CERCA)

2. Vertilas GmbH

3. Electronics and Telecommunications Research Institute (ETRI)

4. Effect Photonics B.V.

5. Politecnico di Milano

6. Technical University of Eindhoven (TUE)

7. Universidad Carlos III de Madrid

8. Telefónica Global CTO

Abstract

Disaggregation in optical networks is particularly relevant to be considered for the deployment of 5G services and towards the support of 6G. Particularly in the metro area network (MAN), this is especially crucial, as is the adoption of suitable photonic technologies enabling dense integration to design a sustainable network architecture. Furthermore, to dynamically allocate the ever-increasing traffic, supporting multiterabit capacity, an optimal usage of the available resources by properly exploiting the multiple dimensions (including the spectral and spatial ones), with programmable and adaptive data plane solutions, is key. In this work, we assess the capabilities of a disaggregated MAN that relies on new photonic devices, node architectures, and sliceable bandwidth/bit-rate-variable transceivers, approaching wavelength division multiplexing and space division multiplexing. A hierarchical network topology is attained and the feasibility of a cross-hierarchy optical continuum is demonstrated. In fact, we experimentally demonstrate the successful transmission of multiterabits/second capacity across multiple nodes corresponding to different hierarchy levels that have different implementation schemes and support different technologies. For the top tier hierarchy level nodes, we demonstrate the transmission of up to 8 × 11 = 88 spatial/spectral channels, for a total capacity of 1.676 Tb/s, employing a node architecture able to handle up to 2560 spatial/spectral channels at different aggregation levels and granularities.

Funder

Horizon 2020 Framework Programme

Ministerio de Ciencia e Innovación

Ministerio de Asuntos Económicos y Transformación Digital, Gobierno de España

Publisher

Optica Publishing Group

Subject

Computer Networks and Communications

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. QoT-aware tree selection, routing, modulation, and spectrum assignment for filterless EONs over the C + L-band;Journal of Optical Communications and Networking;2024-01-24

2. The Multiband over Spatial Division Multiplexing Sliceable Transceiver for Future Optical Networks;Future Internet;2023-11-27

3. Timing Recovery for 400G P2MP Optical Networks Using Coherent Digital Subcarrier Multiplexing;2023 Asia Communications and Photonics Conference/2023 International Photonics and Optoelectronics Meetings (ACP/POEM);2023-11-04

4. Photonic and Quantum Communication Technologies for Optical Networks Evolution;2023 23rd International Conference on Transparent Optical Networks (ICTON);2023-07-02

5. Impact of Device Topology on the Performance of High-Speed 1550 nm Wafer-Fused VCSELs;Photonics;2023-06-07

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