skip to main content
10.1145/1189355.1189372acmotherconferencesArticle/Chapter ViewAbstractPublication PagesacessnetsConference Proceedingsconference-collections
Article

Duobinary modulation format in 10 Gb/s ethernet multi mode fibre (MMF) transmission systems

Published: 04 September 2006 Publication History

Abstract

We compare experimentally the on-off keying (OOK) modulation format with the bandwidth efficient duobinary modulation format in 10 Gb/s Ethernet short haul transmission systems based on multi mode fibre (MMF). Thereby, the investigations are focussed on the robustness towards the negative influences of multimode fibre characteristics. It is shown by experiments that the duobinary modulation format owns a better performance against the limiting fibre influences due to the narrower spectrum. Based on these experimental results, the duobinary modulation format seems to be a very promising candidate for short haul transmission systems based on multi mode fibre as well as on single mode fibre.

References

[1]
A. M. J. Koonen, H. v.d. Boom, I. T. Monroy, G.-K. Khoe; "High Capacity Multi-Service In-House Networks using Mode Group Diversity Multiplexing", Proc. of OFC, Los Angeles, 2004; FG 4
[2]
L. Raddatz, I. H. White, D. G. Cunningham, M. C. Nowell; "An experimental and theoretical study of the offset launch technique for enhancement of the bandwidth of multimode fibre links", IEEE Journal of Lightwave Technology., Mar. 1998, pp. 324--331
[3]
C. Xia, W. Rosenkranz; "Statistical Analysis of Electrical Equalization of Differential Mode Delay in MMF Links for 10-Gigabit Ethernet" Proc. of OFC, Anaheim, 2005, OFO 5
[4]
S. Schöllmann, C. Xia, W. Rosenkranz; "Experimental investigations of Mode Group Diversity Multiplexing on Multimode Fibre", Proc. of OFC, Anaheim, 2006; OWR3
[5]
Kaiser, W.; Wuth, T.; Wichers, M.; Rosenkranz, W.: "Reduced Complexity Optical Duobinary 10Gb/s Transmitter Setup Resulting in an Increased Transmission Distance", IEEE Photonics Technology Letters, August 2001, pp. 884--886
[6]
Wichers, M.; Kaiser, W.; Wuth, T.; Rosenkranz, W.: "Experimental demonstration of chirped duobinary transmission", Electronic Letters Vol.38, No. 4, pp. 191--193, February 2002

Index Terms

  1. Duobinary modulation format in 10 Gb/s ethernet multi mode fibre (MMF) transmission systems

        Recommendations

        Comments

        Information & Contributors

        Information

        Published In

        cover image ACM Other conferences
        AcessNets '06: Proceedings of the 1st international conference on Access networks
        September 2006
        117 pages
        ISBN:1595935134
        DOI:10.1145/1189355
        Permission to make digital or hard copies of all or part of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for components of this work owned by others than ACM must be honored. Abstracting with credit is permitted. To copy otherwise, or republish, to post on servers or to redistribute to lists, requires prior specific permission and/or a fee. Request permissions from [email protected]

        Publisher

        Association for Computing Machinery

        New York, NY, United States

        Publication History

        Published: 04 September 2006

        Permissions

        Request permissions for this article.

        Check for updates

        Qualifiers

        • Article

        Contributors

        Other Metrics

        Bibliometrics & Citations

        Bibliometrics

        Article Metrics

        • 0
          Total Citations
        • 368
          Total Downloads
        • Downloads (Last 12 months)1
        • Downloads (Last 6 weeks)0
        Reflects downloads up to 07 Mar 2025

        Other Metrics

        Citations

        View Options

        Login options

        View options

        PDF

        View or Download as a PDF file.

        PDF

        eReader

        View online with eReader.

        eReader

        Figures

        Tables

        Media

        Share

        Share

        Share this Publication link

        Share on social media