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DSP-Assisted Nonlinear Impairments Tolerant 100 Gbps Optical Backhaul Network for Long-Haul Transmission
High capacity long haul communication and cost-effective solutions for low loss transmission are the major advantages of optical fibers, which makes them a promising solution to be used for backhaul network transportation. A distortion-tolerant 100 Gbps framework that consists of long haul and high...
Autores principales: | , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2020
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7597140/ https://www.ncbi.nlm.nih.gov/pubmed/33286831 http://dx.doi.org/10.3390/e22091062 |
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author | Irfan, Muhammad Ali, Farman Muhammad, Fazal Habib, Usman Alwadie, Abdullah S. Glowacz, Adam Abbas, Ziaul Haq Kańtoch, Eliasz |
author_facet | Irfan, Muhammad Ali, Farman Muhammad, Fazal Habib, Usman Alwadie, Abdullah S. Glowacz, Adam Abbas, Ziaul Haq Kańtoch, Eliasz |
author_sort | Irfan, Muhammad |
collection | PubMed |
description | High capacity long haul communication and cost-effective solutions for low loss transmission are the major advantages of optical fibers, which makes them a promising solution to be used for backhaul network transportation. A distortion-tolerant 100 Gbps framework that consists of long haul and high capacity transport based wavelength division multiplexed (WDM) system is investigated in this paper, with an analysis on different design parameters to mitigate the amplified spontaneous emission (ASE) noise and nonlinear effects due to the fiber transmission. The performance degradation in the presence of non-linear effects is evaluated and a digital signal processing (DSP) assisted receiver is proposed in order to achieve bit error rate (BER) of 1.56 × [Formula: see text] and quality factor (Q-factor) of 5, using 25 and 50 GHz channel spacing with 90 [Formula: see text] m [Formula: see text] effective area of the optical fiber. Analytical calculations of the proposed WDM system are presented and the simulation results verify the effectiveness of the proposed approach in order to mitigate non-linear effects for up to 300 km length of optical fiber transmission. |
format | Online Article Text |
id | pubmed-7597140 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-75971402020-11-09 DSP-Assisted Nonlinear Impairments Tolerant 100 Gbps Optical Backhaul Network for Long-Haul Transmission Irfan, Muhammad Ali, Farman Muhammad, Fazal Habib, Usman Alwadie, Abdullah S. Glowacz, Adam Abbas, Ziaul Haq Kańtoch, Eliasz Entropy (Basel) Article High capacity long haul communication and cost-effective solutions for low loss transmission are the major advantages of optical fibers, which makes them a promising solution to be used for backhaul network transportation. A distortion-tolerant 100 Gbps framework that consists of long haul and high capacity transport based wavelength division multiplexed (WDM) system is investigated in this paper, with an analysis on different design parameters to mitigate the amplified spontaneous emission (ASE) noise and nonlinear effects due to the fiber transmission. The performance degradation in the presence of non-linear effects is evaluated and a digital signal processing (DSP) assisted receiver is proposed in order to achieve bit error rate (BER) of 1.56 × [Formula: see text] and quality factor (Q-factor) of 5, using 25 and 50 GHz channel spacing with 90 [Formula: see text] m [Formula: see text] effective area of the optical fiber. Analytical calculations of the proposed WDM system are presented and the simulation results verify the effectiveness of the proposed approach in order to mitigate non-linear effects for up to 300 km length of optical fiber transmission. MDPI 2020-09-22 /pmc/articles/PMC7597140/ /pubmed/33286831 http://dx.doi.org/10.3390/e22091062 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Irfan, Muhammad Ali, Farman Muhammad, Fazal Habib, Usman Alwadie, Abdullah S. Glowacz, Adam Abbas, Ziaul Haq Kańtoch, Eliasz DSP-Assisted Nonlinear Impairments Tolerant 100 Gbps Optical Backhaul Network for Long-Haul Transmission |
title | DSP-Assisted Nonlinear Impairments Tolerant 100 Gbps Optical Backhaul Network for Long-Haul Transmission |
title_full | DSP-Assisted Nonlinear Impairments Tolerant 100 Gbps Optical Backhaul Network for Long-Haul Transmission |
title_fullStr | DSP-Assisted Nonlinear Impairments Tolerant 100 Gbps Optical Backhaul Network for Long-Haul Transmission |
title_full_unstemmed | DSP-Assisted Nonlinear Impairments Tolerant 100 Gbps Optical Backhaul Network for Long-Haul Transmission |
title_short | DSP-Assisted Nonlinear Impairments Tolerant 100 Gbps Optical Backhaul Network for Long-Haul Transmission |
title_sort | dsp-assisted nonlinear impairments tolerant 100 gbps optical backhaul network for long-haul transmission |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7597140/ https://www.ncbi.nlm.nih.gov/pubmed/33286831 http://dx.doi.org/10.3390/e22091062 |
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