Polynomial Closed Form Model for Ultra-Wideband Transmission Systems

Fuente: arXiv
Salvato in:
Dettagli Bibliografici
Autori principali: Poggiolini, Pierluigi, Jiang, Yanchao, Gao, Yifeng, Forghieri, Fabrizio
Natura: Preprint
Pubblicazione: 2025
Soggetti:
Accesso online:
Tags: Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
_version_ 1866911130097549312
author Poggiolini, Pierluigi
Jiang, Yanchao
Gao, Yifeng
Forghieri, Fabrizio
author_facet Poggiolini, Pierluigi
Jiang, Yanchao
Gao, Yifeng
Forghieri, Fabrizio
contents Ultrafast and accurate physical layer models are essential for designing, optimizing and managing ultra-wideband optical transmission systems. We present a closed-form GN/EGN model, named Polynomial Closed-Form Model (PCFM), improving reliability, accuracy, and generality. The key to deriving PCFM is expressing the spatial power profile of each channel along a span as a polynomial. Then, under reasonable approximations, the integral calculation can be carried out analytically, for any chosen degree of the polynomial. We present a full detailed derivation of the model. We then validate it vs. the numerically integrated GN-model in a challenging multiband (C+L+S) scenario, including Raman amplification and inter-channel Raman scattering. We then show that the approach works well also in the special case of the presence of multiple lumped loss along the fiber. Overall, the approach shows very good accuracy and broad applicability. A software implementing the model, fully reconfigurable to any type of system layout, is available for download under the Creative Commons 4.0 License.
format Preprint
id arxiv_https___arxiv_org_abs_2508_21563
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Polynomial Closed Form Model for Ultra-Wideband Transmission Systems
Poggiolini, Pierluigi
Jiang, Yanchao
Gao, Yifeng
Forghieri, Fabrizio
Signal Processing
Ultrafast and accurate physical layer models are essential for designing, optimizing and managing ultra-wideband optical transmission systems. We present a closed-form GN/EGN model, named Polynomial Closed-Form Model (PCFM), improving reliability, accuracy, and generality. The key to deriving PCFM is expressing the spatial power profile of each channel along a span as a polynomial. Then, under reasonable approximations, the integral calculation can be carried out analytically, for any chosen degree of the polynomial. We present a full detailed derivation of the model. We then validate it vs. the numerically integrated GN-model in a challenging multiband (C+L+S) scenario, including Raman amplification and inter-channel Raman scattering. We then show that the approach works well also in the special case of the presence of multiple lumped loss along the fiber. Overall, the approach shows very good accuracy and broad applicability. A software implementing the model, fully reconfigurable to any type of system layout, is available for download under the Creative Commons 4.0 License.
title Polynomial Closed Form Model for Ultra-Wideband Transmission Systems
topic Signal Processing
url https://arxiv.org/abs/2508.21563