Synergizing Hyper-accelerated Power Optimization and Wavelength-Dependent QoT-Aware Cross-Layer Design in Next-Generation Multi-Band EONs
Journal article, 2025

The extension of elastic optical network (EON) technologies to multi-band transmission (MB-EON) promises enhanced spectral efficiency, greater throughput, and long-term cost benefits for telecom operators. However, designing such networks presents challenges, particularly in optimizing physical parameters like optical power and quality of transmission (QoT) across different frequency bands. This paper introduces a methodology for optimal span-by-span power allocation using two hyper-accelerated power optimization (HPO) modes: flat launch power (FLP) and flat received power (FRP). This methodology significantly accelerate network power optimization while ensuring service stability in scenarios such as changes in network parameters, QoT degradation due to aging, and network re-optimization or upgrading. Through a comprehensive comparison, we find that FRP notably improves signal flatness and GSNR/OSNR, particularly in the S-band, contributing to a network-wide throughput increase in the order of 12% to 75%. Additionally, we demonstrate that HPO applied to global power optimization is simpler and more cost-effective than when applied to local methods for large-scale networks.

Multi-band

LOGON

Quality of Transmission (QoT)

Elastic Optical Networks (EONs)

Power Optimization

Author

Farhad Arpanaei

Universidad Carlos III de Madrid

M. Ranjbar Zefreh

Cisco Systems

Yanchao Jiang

Polytechnic University of Turin

Pierluigi Poggiolini

Polytechnic University of Turin

K. Ghodsifar

Amirkabir University of Technology

H. Beyranvand

Amirkabir University of Technology

Carlos Natalino Da Silva

Chalmers, Electrical Engineering, Communication, Antennas and Optical Networks

Paolo Monti

Chalmers, Electrical Engineering, Communication, Antennas and Optical Networks

A. Napoli

Infinera Corporation

José M. Rivas-Moscoso

Telefonica

Oscar Gonzalez De Dios

Telefonica

Juan P. Fernandez-Palacios

Telefonica

Octavia A. Dobre

Memorial University of Newfoundland

J. A. Hernández

Universidad Carlos III de Madrid

D. Larrabeiti

Universidad Carlos III de Madrid

IEEE Journal on Selected Areas in Communications

0733-8716 (ISSN) 15580008 (eISSN)

Vol. In Press

Subject Categories (SSIF 2025)

Communication Systems

Telecommunications

DOI

10.1109/JSAC.2025.3543528

More information

Latest update

3/14/2025