The Influence of Digital Modulations on 320 Gbit/s Optical Time Division Multiplexing

In this article the optical time division multiplexingtechnique for high speed point-to-point optical networksis discussed. We performed test of influence of selected types modulation formats in the optical time division multiplexing simulation model with a distance of 30 km. Additionally, this pape...

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Main Authors: Lukas Koci, Petr Munster, Tomas Horvath, Milan Cucka, Miloslav Filka
Format: Article
Language:English
Published: Croatian Communications and Information Society (CCIS) 2015-12-01
Series:Journal of Communications Software and Systems
Subjects:
Online Access:https://jcomss.fesb.unist.hr/index.php/jcomss/article/view/96
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author Lukas Koci
Petr Munster
Tomas Horvath
Milan Cucka
Miloslav Filka
author_facet Lukas Koci
Petr Munster
Tomas Horvath
Milan Cucka
Miloslav Filka
author_sort Lukas Koci
collection DOAJ
description In this article the optical time division multiplexingtechnique for high speed point-to-point optical networksis discussed. We performed test of influence of selected types modulation formats in the optical time division multiplexing simulation model with a distance of 30 km. Additionally, this paper focuses on maximum bandwidth usage, improvement of bit error rate and the another goal is to achieve the maximal transmission distance by using of special compensation optical fiber. Optimal length of compensation optical fiber was found and used during simulations. We demonstrated positive influence compensation optical fiber on bit error rate. For comparisonof modulation formats such as return-to-zero, non-return-to-zero, chirped-return-to-zero, carrier-suppressed-return-to-zero, and m-ary quadrature amplitude modulation were tested. Our results confirm that it is possible to achieve better bit error rate for selected modulation formats.
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spelling doaj.art-9b72d65d0e7d46e6a10fd1d403e71c632022-12-22T03:52:55ZengCroatian Communications and Information Society (CCIS)Journal of Communications Software and Systems1845-64211846-60792015-12-01114187191The Influence of Digital Modulations on 320 Gbit/s Optical Time Division MultiplexingLukas KociPetr MunsterTomas HorvathMilan CuckaMiloslav FilkaIn this article the optical time division multiplexingtechnique for high speed point-to-point optical networksis discussed. We performed test of influence of selected types modulation formats in the optical time division multiplexing simulation model with a distance of 30 km. Additionally, this paper focuses on maximum bandwidth usage, improvement of bit error rate and the another goal is to achieve the maximal transmission distance by using of special compensation optical fiber. Optimal length of compensation optical fiber was found and used during simulations. We demonstrated positive influence compensation optical fiber on bit error rate. For comparisonof modulation formats such as return-to-zero, non-return-to-zero, chirped-return-to-zero, carrier-suppressed-return-to-zero, and m-ary quadrature amplitude modulation were tested. Our results confirm that it is possible to achieve better bit error rate for selected modulation formats.https://jcomss.fesb.unist.hr/index.php/jcomss/article/view/96OTDMRZNRZCRZm-QAMmodulationBER
spellingShingle Lukas Koci
Petr Munster
Tomas Horvath
Milan Cucka
Miloslav Filka
The Influence of Digital Modulations on 320 Gbit/s Optical Time Division Multiplexing
Journal of Communications Software and Systems
OTDM
RZ
NRZ
CRZ
m-QAM
modulation
BER
title The Influence of Digital Modulations on 320 Gbit/s Optical Time Division Multiplexing
title_full The Influence of Digital Modulations on 320 Gbit/s Optical Time Division Multiplexing
title_fullStr The Influence of Digital Modulations on 320 Gbit/s Optical Time Division Multiplexing
title_full_unstemmed The Influence of Digital Modulations on 320 Gbit/s Optical Time Division Multiplexing
title_short The Influence of Digital Modulations on 320 Gbit/s Optical Time Division Multiplexing
title_sort influence of digital modulations on 320 gbit s optical time division multiplexing
topic OTDM
RZ
NRZ
CRZ
m-QAM
modulation
BER
url https://jcomss.fesb.unist.hr/index.php/jcomss/article/view/96
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