Comparison of Dispersion Compensation Techniques for Real-Time up to 160 Gbit/s DWDM C-Band Transmission

The exponential growth of data traffic related to the progress of newest technologies (e.g., 4K/8K live stream videos, virtual reality (VR) applications, etc.), new services, and a fast-growing number of end-users require higher bandwidth and increase of user bitrate, as a result pushing hard the te...

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Main Authors: Toms Salgals, Andis Supe, Vjaceslavs Bobrovs, Jurgis Porins, Sandis Spolitis
Format: Article
Language:English
Published: Kaunas University of Technology 2020-04-01
Series:Elektronika ir Elektrotechnika
Subjects:
Online Access:http://eejournal.ktu.lt/index.php/elt/article/view/25892
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author Toms Salgals
Andis Supe
Vjaceslavs Bobrovs
Jurgis Porins
Sandis Spolitis
author_facet Toms Salgals
Andis Supe
Vjaceslavs Bobrovs
Jurgis Porins
Sandis Spolitis
author_sort Toms Salgals
collection DOAJ
description The exponential growth of data traffic related to the progress of newest technologies (e.g., 4K/8K live stream videos, virtual reality (VR) applications, etc.), new services, and a fast-growing number of end-users require higher bandwidth and increase of user bitrate, as a result pushing hard the telecommunication infrastructure for upgrading. Expected usage of more complex modulation formats in fiber optical link infrastructure for cellular network transmission and data center interconnections (DCI) are still affected with fundamental chromatic dispersion influence on the signal quality, which consequently increases bit error rate (BER). We experimentally demonstrate a real-time comparison of commercially used dispersion compensation techniques for 100 GHz spaced dense wavelength division multiplexed (DWDM) optical transmission system with a total transmission speed capacity of 160 Gbit/s.
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spelling doaj.art-69253623e50247e58ea44b1d1d1285762022-12-21T21:09:16ZengKaunas University of TechnologyElektronika ir Elektrotechnika1392-12152029-57312020-04-01262859310.5755/j01.eie.26.2.2589225892Comparison of Dispersion Compensation Techniques for Real-Time up to 160 Gbit/s DWDM C-Band TransmissionToms Salgals0Andis Supe1Vjaceslavs Bobrovs2Jurgis Porins3Sandis Spolitis4Institute of Telecommunications, Riga Technical University, Communication Technologies Research Center, Riga Technical UniversityInstitute of Telecommunications, Riga Technical UniversityInstitute of Telecommunications, Riga Technical UniversityInstitute of Telecommunications, Riga Technical UniversityInstitute of Telecommunications, Riga Technical University, Communication Technologies Research Center, Riga Technical UniversityThe exponential growth of data traffic related to the progress of newest technologies (e.g., 4K/8K live stream videos, virtual reality (VR) applications, etc.), new services, and a fast-growing number of end-users require higher bandwidth and increase of user bitrate, as a result pushing hard the telecommunication infrastructure for upgrading. Expected usage of more complex modulation formats in fiber optical link infrastructure for cellular network transmission and data center interconnections (DCI) are still affected with fundamental chromatic dispersion influence on the signal quality, which consequently increases bit error rate (BER). We experimentally demonstrate a real-time comparison of commercially used dispersion compensation techniques for 100 GHz spaced dense wavelength division multiplexed (DWDM) optical transmission system with a total transmission speed capacity of 160 Gbit/s.http://eejournal.ktu.lt/index.php/elt/article/view/25892dense wavelength division multiplexing (dwdm)chromatic dispersion (cd)fiber bragg grating dispersion compensation module (fbg-dcm)dispersion compensation fiber (dcf)non-return-to-zero on-off keying (nrz-ook)
spellingShingle Toms Salgals
Andis Supe
Vjaceslavs Bobrovs
Jurgis Porins
Sandis Spolitis
Comparison of Dispersion Compensation Techniques for Real-Time up to 160 Gbit/s DWDM C-Band Transmission
Elektronika ir Elektrotechnika
dense wavelength division multiplexing (dwdm)
chromatic dispersion (cd)
fiber bragg grating dispersion compensation module (fbg-dcm)
dispersion compensation fiber (dcf)
non-return-to-zero on-off keying (nrz-ook)
title Comparison of Dispersion Compensation Techniques for Real-Time up to 160 Gbit/s DWDM C-Band Transmission
title_full Comparison of Dispersion Compensation Techniques for Real-Time up to 160 Gbit/s DWDM C-Band Transmission
title_fullStr Comparison of Dispersion Compensation Techniques for Real-Time up to 160 Gbit/s DWDM C-Band Transmission
title_full_unstemmed Comparison of Dispersion Compensation Techniques for Real-Time up to 160 Gbit/s DWDM C-Band Transmission
title_short Comparison of Dispersion Compensation Techniques for Real-Time up to 160 Gbit/s DWDM C-Band Transmission
title_sort comparison of dispersion compensation techniques for real time up to 160 gbit s dwdm c band transmission
topic dense wavelength division multiplexing (dwdm)
chromatic dispersion (cd)
fiber bragg grating dispersion compensation module (fbg-dcm)
dispersion compensation fiber (dcf)
non-return-to-zero on-off keying (nrz-ook)
url http://eejournal.ktu.lt/index.php/elt/article/view/25892
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AT andissupe comparisonofdispersioncompensationtechniquesforrealtimeupto160gbitsdwdmcbandtransmission
AT vjaceslavsbobrovs comparisonofdispersioncompensationtechniquesforrealtimeupto160gbitsdwdmcbandtransmission
AT jurgisporins comparisonofdispersioncompensationtechniquesforrealtimeupto160gbitsdwdmcbandtransmission
AT sandisspolitis comparisonofdispersioncompensationtechniquesforrealtimeupto160gbitsdwdmcbandtransmission