Optimization of Dense Wavelength Division Multiplexing for Optical Fiber System

Abstract

This paper presents the design and the main performance results of dense wave length division multiplexing (DWDM) before optimization and after optimization with eye equalizer and BER (bit error rate) equalizer. The aim of this paper is to comparison between DWDM before optimization (using fewer channels (four channel)) and after optimization (using more channels (11channels).This optimization of DWDM will be achieved with optisym 7.0 program. There are four 10GBPS channels were combined and transmitted over the 72.8km long optical fiber. The paper was based on simulation the given solution and optimized it.

Country : Sudan

1 Abdelhamid Mohammedahmed Abdelbagi

  1. Omdurman Islamic university, Faculty of Engineering Sciences, Department of Electrical and Electronic Engineering, Sudan

IRJIET, Volume 5, Issue 6, June 2021 pp. 107-110

doi.org/10.47001/IRJIET/2021.506021

References

  1. Jean –Pierre laude, DWDM Fundamentals: Components and Applications, Artech house roston London, 2002.
  2. JAMES Downing, Fiber –optic communication, Thomas Delmar learning, 2005.
  3. Nick Massa, Fiber optic telecommunication, spring field technical community: college spring field massa chusetts.
  4. Introduction to DWDM technology, Cisco systems, INC USA, 2000.
  5. Introduction to DWDM technology, IEEE PRESS, Wiley intercedence john wiley and sons. INC Publication NewYork, 2000.
  6. Introduction to DWDM technology, Cisco systems, NC USA, 2000.
  7. International Telecommunication Union: Recommendations G.694.1(06\2004), G.697(06\2004), G.694.1(02\2012), G.656(07\2010), G.698.3(02\2012), G.973.1(11\2009).
  8. Rui Manuel Morais and João Pedro, Machine learning Models for Estimating Quality of Transmission in DWDM Networks,  Journal of Optical Communications and Networking Vol. 10, Issue 10, pp. D84-D99 (2018) -https://doi.org/10.1364/JOCN.10.000D84
  9. Mahdi Zavvari, Design of Photonic Crystal-Based Demultiplexer with High-Quality Factor for DWDM Applications, Journal of Optical Communications, Volume 40, Issue 2, Pages 135–138, eISSN 2191-6322, ISSN 0173-4911, DOI: https://doi.org/10.1515/joc-2017-0058, 22-06- 2017.
  10. Vishal Sharma, Shivani Sharma, High speed ,long-reach bidirectional OFDM-DWDM-EPON Access system, ACCT '14: Proceedings of the 2014 Fourth International Conference on Advanced Computing & Communication Technologies, February 2014 Pages 150–152.
  11. Sethumadhavan Chandrasekhar, Xiang Liu, 40 Gbps DBPSK and DQPSK formats for transparent 50 GHz DWDM transmission, Bell Labs Technical Journal -February 2010- Bell Labs Technical Journal, Volume 14, Issue 4, February 2010, pp 11–25.
  12. Stamatios V Kartalopoulos, Fault Detectability in DWDM: Toward Higher Signal Quality and System Reliability, Wiley-IEEE Press-ISBN: 978-0-7803-6044-0, Pages156, March2001.
  13. A.G. Malis-Ascend Communications Inc, IEEE Communications Magazine (Volume: 37, Issue: 6, June 1999)-Page(s):140 – 145.