Startseite Investigation of 16 × 10 Gbps DWDM System Based on Optimized Semiconductor Optical Amplifier
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Investigation of 16 × 10 Gbps DWDM System Based on Optimized Semiconductor Optical Amplifier

  • Aruna Rani EMAIL logo und Sanjeev Dewra
Veröffentlicht/Copyright: 9. Juni 2016
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Abstract

This paper investigates the performance of an optical system based on optimized semiconductor optical amplifier (SOA) at 160 Gbps with 0.8 nm channel spacing. Transmission distances up to 280 km at –30 dBm input signal power and up to 247 km at –32 dBm input signal power with acceptable bit error rate (BER) and Q-factor are examined. It is also analyzed that the transmission distance up to 292 km has been covered at –28 dBm input signal power using Dispersion Shifted (DS)-Normal fiber without any power compensation methods.

References

1. Ciaramella E, D’Errico A, Donzella V. Using semiconductor-optical amplifiers with constant envelope WDM signals. IEEE J Quantum Electron 2008;44:403–9.10.1109/JQE.2007.914883Suche in Google Scholar

2. Dewra S, Kaler RS. Crosstalk analysis in an optical network based on optical cross connects with different MZI techniques. Optik 2013;124:55–9.10.1016/j.ijleo.2011.11.042Suche in Google Scholar

3. Udvary E. Off-set filtering effect in SOA based optical access network. Radio Eng 2016;25(1):26–33.10.13164/re.2016.0026Suche in Google Scholar

4. Akiyama T, Ekawa M, Sugawara M, Kawaguchi K, Sudo H, Kuramata A, et al. An ultrawide-band semiconductor optical amplifier having an extremely high penalty-free output power of 23 dBm achieved with quantum dots. IEEE Photon Technol Lett Aug 2005;17(8):1614–16.10.1109/LPT.2005.851884Suche in Google Scholar

5. Juodawlkis PW, Plant JJ, Huang RK, Missaggia LJ, Donnelly JP. High-power 1.5 µm InGaAsP-InP slab-coupled optical waveguide amplifier. IEEE Photon Technol Lett Feb 2005;17(2):279–81.10.1109/LPT.2004.839770Suche in Google Scholar

6. Rani A, Dewra S. Performance evaluation of DWDM system using semiconductor optical amplifier in the presence of fiber non-linearities. Int J Enhanced Res Sci Technol Eng 2014;3(2):301–5.Suche in Google Scholar

7. O’Mahony MJ. Semiconductor laser optical amplifiers for use in future fiber systems. J Lightwave Technol 1988;6:531–44.10.1109/50.4035Suche in Google Scholar

8. Yang W, Cao T, Yu Yu, Shi L, Zhang X, Huang D. Theoretical analysis and experimental investigation of degenerate phase-sensitive amplification in a semiconductor optical amplifier. J Lightwave Technol 2015;33(19):4001–7.10.1109/JLT.2015.2461572Suche in Google Scholar

9. Agarwal GP. Fiber optic communication systems. New York: John Wiley & Sons, Inc. Publication, 2003.Suche in Google Scholar

10. Liu Z, Sadeghi M, de Valicourt G, Brenot R, Violas M. Experiment validation of a reflective semiconductor optical amplifier model used as a modulator in radio over fiber systems. IEEE Photon Technol Lett 2011;23(9):576–8.10.1109/LPT.2011.2117414Suche in Google Scholar

11. Udvary E, Berceli T. Improvements in the linearity of semiconductor optical amplifiers as external modulators. IEEE Trans Microw Theory Tech 2010;58(11):3161–6.10.1109/TMTT.2010.2075550Suche in Google Scholar

12. Kim Y, Jang H, Kim Y, Lee J, Jang D, Jeong J. Transmission performance of 10-Gb/s 1550-nm transmitters using semiconductor optical amplifiers as booster amplifiers. IEEE J Lightwave Technol 2003;21(2):476–81.10.1109/JLT.2003.808751Suche in Google Scholar

13. Parolari P, Marazzi L, Brunero M, Martinelli M, Brenot R, Maho A, et al. 10-Gb/s operation of a colorless self-seeded transmitter over more than 70 km of SSMF. IEEE Photon Technol Lett 2014;26:1–4.10.1109/LPT.2014.2301192Suche in Google Scholar

14. Choi W, Hur S, Lee J, Kim Y, Jeong J. Transmission performance analysis of 8 × 10 Gb/s WDM signals using cascaded SOAs due to signal wavelength displacement. J Lightwave Technol 2002;20(8):1350–6.10.1109/JLT.2002.800797Suche in Google Scholar

15. Singh S, Kaler RS. Placement of optimized semiconductor optical amplifier in fiber optical communication systems. Optik 2008;119:296–302.10.1016/j.ijleo.2006.12.003Suche in Google Scholar

16. Mahad FD, Supa’at AS, Idrus SM, Forsyth D. Simulation on semiconductor optical amplifier intensity noise reduction for future spectrum-sliced optical networks. Optik 2012;123:95–9.10.1016/j.ijleo.2011.02.022Suche in Google Scholar

Received: 2016-3-14
Accepted: 2016-5-2
Published Online: 2016-6-9
Published in Print: 2017-8-28

© 2017 Walter de Gruyter GmbH, Berlin/Boston

Artikel in diesem Heft

  1. Frontmatter
  2. Amplifiers
  3. Gain Saturation Analysis of Raman–Fiber Optical Parametric Hybrid Amplifier
  4. Investigation of 16 × 10 Gbps DWDM System Based on Optimized Semiconductor Optical Amplifier
  5. A Coherent Optical OFDM Communication System with Nonlinear Distortion Compensation in the Channel and Receiver
  6. Detectors
  7. Evaluation of FSO Link Using Array of Photodetectors
  8. Devices
  9. Design of a Directional Coupler based on UV-Induced LiNbO3 Waveguides
  10. Fibers
  11. A Novel Demultiplexing Design for Coarse WDM: Exploiting Material Dispersion
  12. Integrated optics
  13. Exact Dispersion Study of an Asymmetric Thin Planar Slab Dielectric Waveguide without Computing d2βdk2 Numerically
  14. Networks
  15. Performance of Bus and Ring Network Topologies Based on SOA Bias Current
  16. A Energy-Saving Path-Shared Protection Based on Diversity Network Coding for Multi-rate Multicast in WDM Mesh Networks
  17. Receiver
  18. An Analytical Approach for Performance Enhancement of FSO Communication System Using Array of Receivers in Adverse Weather Conditions
  19. Modelling of 10 Gbps Free Space Optics Communication Link Using Array of Receivers in Moderate and Harsh Weather Conditions
  20. Systems
  21. Performance Evaluation and Nonlinear Mitigation through DQPSK Modulation in 32 × 40 Gbps Long-Haul DWDM Systems
  22. Numerical Analysis of the Performance of Millimeter-Wave RoF-Based Cellular Backhaul Links
  23. Impact of XPM Crosstalk on SCM-Based RoF Systems
  24. Simulative Investigation on the Effect of Different Parameters on the Performance of IsOWC System
  25. Application of Optical Frequency Comb in High-Capacity Long Distance Optical Communication for China-Pakistan Economic Corridor
  26. Theory
  27. Investigating and Modeling the Effect of Laser Intensity and Nonlinear Regime of the Fiber on the Optical Link
  28. Performance of Different OCDMA Codes with FWM and XPM Nonlinear Effects
Heruntergeladen am 28.9.2025 von https://www.degruyterbrill.com/document/doi/10.1515/joc-2016-0029/html
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