Networking assessment of ROADM architecture based on a photonics integrated WSS for 800G multi-band optical transport

Author:

Masood Muhammad Umar1ORCID,Tunesi Lorenzo1ORCID,Khan Ihtesham1ORCID,Correia Bruno1ORCID,Sadeghi Rasoul1ORCID,Ghillino Enrico2,Bardella Paolo1ORCID,Carena Andrea1ORCID,Curri Vittorio1ORCID

Affiliation:

1. Politecnico di Torino

2. Synopsys, Inc.

Abstract

The capacity of the optical transport network must be expanded to support the increasing demand due to bandwidth-intensive applications. Multi-band transmission solutions can achieve this goal by exploiting the low-loss optical spectrum windows while maintaining the same existing fiber infrastructure, increasing the network’s capacity, and minimizing the operator capital expenditure (CAPEX) by limiting the need for a new fiber deployment. In the context of multi-band transmission, this work proposes a novel reconfigurable optical add–drop multiplexer (ROADM) architecture using a modular photonic integrated multi-band wavelength selective switch (WSS) that operates over multi-bands (S + C + L). This study focuses on conducting a comprehensive network performance analysis of different settings, enabling operation from 400G up to 800G using the proposed multi-band WSS on two real network topologies: German and Italian. The results provide the potential benefits of transitioning from traditional C-band transmission to multi-band transmission based on overall network performance.

Funder

H2020 Marie Skłodowska-Curie Actions

Publisher

Optica Publishing Group

Subject

Computer Networks and Communications

Reference23 articles.

1. Assessment on the Achievable Throughput of Multi-Band ITU-T G.652.D Fiber Transmission Systems

2. Multiband optical transport: a cost-effective and seamless increase of network capacity;Curri,2021

3. Wavelength-Selective Switches for ROADM Applications

4. Network performance of ROADM architecture enabled by novel wideband-integrated WSS;Masood,2022

5. Modular photonic-integrated device for multi-band wavelength-selective switching;Tunesi,2022

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