Simulation Investigation of Symmetric 8 × 25 Gbps Hybrid TWDM-DFMA PON for Long-Reach Applications

By utilizing digital filter multiple access (DFMA) technique in the optical access networks allows immense potential to offers superb backward compatibility with existing optical as well as forthcoming cloud access networks. Time and wavelength division multiplexing passive optical network (TWDM-PON...

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Main Authors: Meet Kumari, Vivek Arya, Hamza Mohammed Ridha Al-Khafaji
Format: Article
Language:English
Published: IEEE 2023-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/10113637/
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author Meet Kumari
Vivek Arya
Hamza Mohammed Ridha Al-Khafaji
author_facet Meet Kumari
Vivek Arya
Hamza Mohammed Ridha Al-Khafaji
author_sort Meet Kumari
collection DOAJ
description By utilizing digital filter multiple access (DFMA) technique in the optical access networks allows immense potential to offers superb backward compatibility with existing optical as well as forthcoming cloud access networks. Time and wavelength division multiplexing passive optical network (TWDM-PON) incorporating DFMA depicts the promise of absolute and economical optical access networks for 5G based long-reach high speed applications. This simulation work in OptiSystem software, presents a bidirectional hybrid TWDM-DFMA PON system at 25Gbps data rate employing eight uplink and eight downlink channels for long-reach applications. The advantage of this work is to provide a high-bandwidth as well as advanced last-mile network having adequate resource utilization for fiber links. The minimal received power of–19dBm in uplink as well as–14dBm in downlink transmission can be obtained by the proposed system over 50km fiber length at 200Gbps data rate. The system offers faithful data transmission over 150km and 100km in uplink and downlink directions, respectively, over a single fiber link. Further, the system can support end optical units up to 250 in uplink and 120 in downlink successfully. Moreover, a power budget improvement of 4dB and a maximum optical signal to noise ratio (OSNR) of 91dB can be obtained for the system. Besides this, the proposed PON is most efficient compared to other conventional PONs in terms of less energy consumption, better spectral usage, long-reach transmission at high data rate and ability to handle large number of end users.
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spelling doaj.art-06e6019f6a1d401f83d4b7f50729d2262023-06-12T23:00:50ZengIEEEIEEE Access2169-35362023-01-0111433604336910.1109/ACCESS.2023.327229310113637Simulation Investigation of Symmetric 8 × 25 Gbps Hybrid TWDM-DFMA PON for Long-Reach ApplicationsMeet Kumari0https://orcid.org/0000-0001-9975-1557Vivek Arya1https://orcid.org/0000-0002-9749-4865Hamza Mohammed Ridha Al-Khafaji2https://orcid.org/0000-0003-3620-581XDepartment of Electronics and Communication Engineering, Chandigarh University, Mohali, Punjab, IndiaDepartment of Electronics and Communication Engineering, Faculty of Engineering and Technology, Gurukula Kangri (Deemed to be University), Haridwar, IndiaBiomedical Engineering Department, College of Engineering and Technologies, Al-Mustaqbal University, Hillah, Babil, IraqBy utilizing digital filter multiple access (DFMA) technique in the optical access networks allows immense potential to offers superb backward compatibility with existing optical as well as forthcoming cloud access networks. Time and wavelength division multiplexing passive optical network (TWDM-PON) incorporating DFMA depicts the promise of absolute and economical optical access networks for 5G based long-reach high speed applications. This simulation work in OptiSystem software, presents a bidirectional hybrid TWDM-DFMA PON system at 25Gbps data rate employing eight uplink and eight downlink channels for long-reach applications. The advantage of this work is to provide a high-bandwidth as well as advanced last-mile network having adequate resource utilization for fiber links. The minimal received power of–19dBm in uplink as well as–14dBm in downlink transmission can be obtained by the proposed system over 50km fiber length at 200Gbps data rate. The system offers faithful data transmission over 150km and 100km in uplink and downlink directions, respectively, over a single fiber link. Further, the system can support end optical units up to 250 in uplink and 120 in downlink successfully. Moreover, a power budget improvement of 4dB and a maximum optical signal to noise ratio (OSNR) of 91dB can be obtained for the system. Besides this, the proposed PON is most efficient compared to other conventional PONs in terms of less energy consumption, better spectral usage, long-reach transmission at high data rate and ability to handle large number of end users.https://ieeexplore.ieee.org/document/10113637/Digital filter multiple access (DFMA)passive optical network (PON)time and wavelength division multiplexing (TWDM)
spellingShingle Meet Kumari
Vivek Arya
Hamza Mohammed Ridha Al-Khafaji
Simulation Investigation of Symmetric 8 × 25 Gbps Hybrid TWDM-DFMA PON for Long-Reach Applications
IEEE Access
Digital filter multiple access (DFMA)
passive optical network (PON)
time and wavelength division multiplexing (TWDM)
title Simulation Investigation of Symmetric 8 × 25 Gbps Hybrid TWDM-DFMA PON for Long-Reach Applications
title_full Simulation Investigation of Symmetric 8 × 25 Gbps Hybrid TWDM-DFMA PON for Long-Reach Applications
title_fullStr Simulation Investigation of Symmetric 8 × 25 Gbps Hybrid TWDM-DFMA PON for Long-Reach Applications
title_full_unstemmed Simulation Investigation of Symmetric 8 × 25 Gbps Hybrid TWDM-DFMA PON for Long-Reach Applications
title_short Simulation Investigation of Symmetric 8 × 25 Gbps Hybrid TWDM-DFMA PON for Long-Reach Applications
title_sort simulation investigation of symmetric 8 x00d7 25 gbps hybrid twdm dfma pon for long reach applications
topic Digital filter multiple access (DFMA)
passive optical network (PON)
time and wavelength division multiplexing (TWDM)
url https://ieeexplore.ieee.org/document/10113637/
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