Home Performance Analysis of FBG WDM System using Different Optical Amplifiers
Article
Licensed
Unlicensed Requires Authentication

Performance Analysis of FBG WDM System using Different Optical Amplifiers

  • Suraj Jain and Chakresh Kumar EMAIL logo
Published/Copyright: August 24, 2018
Become an author with De Gruyter Brill

Abstract

This paper aims to analyze the performance of FBG 60 channel wavelength-division multiplexing system using different optical amplifiers namely RAMAN, erbium-doped fiber amplifier (EDFA) and semiconductor optical amplifier (SOA) separately at 10 Gbps data rate up to a fiber length of 280 km. Based upon the results, the performance of the three amplifiers has been compared on the basis of multiple performance parameters. It is seen that EDFA simulates good results in terms of bit error rate (BER) up to a fiber distance of approximately 80 km and Q factor up to a distance of approximately 90 km among all the three amplifiers. However, power received is least in EDFA. RAMAN amplifier provides a better Q factor after the fiber distance of approximately 90 km and a better BER after the fiber distance of approximately 80 km compared to the other three amplifiers. SOA shows better results in terms of power received up to a fiber distance of approximately 100 km. RAMAN amplifier provides better output power after a distance of 100 km. Eye diagrams and power spectrums of the network with different optical amplifiers has also been analyzed.

Keywords: FBG; SOA; RAMAN; WDM; BER; EDFA

References

1. Kaur M, Mahajan A. Simulation analysis of 32 channel WDM system using SMF 28 optical fiber at various power levels. Int J Comput Appl. 2016 October;152:17–20.10.5120/ijca2016911812Search in Google Scholar

2. Patel MG, Kant SB. Soliton transmission in fiber optics for long distance communication. Intl J Electrical, Electronics and Instrumentation Engineering February 2 2014;3:7100–07.Search in Google Scholar

3. Susmita. Available at: http://blog.cubeoptics.com/index.php/2014/11/soa-fundamentals-semiconductor-optical-amplifier. Accessed: 3 November 2014;57–62.Search in Google Scholar

4. Bobrovs V, Olonkins S, Alsevska A, Gegere L, Ivanovs G. Comparative performance of Raman-SOA and Raman-EDFA hybrid optical amplifiers in DWDM transmission systems. Int J Phys Sci. 2013 October;22;8:1898–906.Search in Google Scholar

5. Aziz HM, Zahir E. Investigating a simulated model of 2.5 GHz 64 channel 140 km DWDM system using EDFA and Raman amplifier considering self-phase modulation. IOSR J Electronics and Communication engineering 2015 February;10:91–95.Search in Google Scholar

6. Bobrovs V, Olonkins S, Alsevska A, Gegere L, Ivanovs G, Parts R, et al. Application of the erbium doped fiber in WDM transmission systems. Int J Phys Sci. 2013;9:91–101.Search in Google Scholar

7. Giles CR, Desurvire E. Modeling erbium-doped fiber amplifiers. J Lightwave Technol. 1991;9:271.10.1109/50.65886Search in Google Scholar

8. Ismail K, Menon PS, Shaari S. Implementation of SOA and EDFA combination in DWDM system. Adv Sci Lett. 2017 May 5;23:4065–7.10.1166/asl.2017.8333Search in Google Scholar

9. Mishal Singla P, Kumar S. Comparative analysis of EDFA based 64 channel WDM systems for different pumping techniques. Int J Sci Eng Res. 2014 June;5:66–9.Search in Google Scholar

10. Li T. The impact of optical amplifiers on long-distance lightwave telecommunications. Proceedings of the IEEE, November 1993:81:1568–79.10.1109/5.247728Search in Google Scholar

Received: 2018-06-19
Accepted: 2018-08-06
Published Online: 2018-08-24
Published in Print: 2021-07-27

© 2018 Walter de Gruyter GmbH, Berlin/Boston

Articles in the same Issue

  1. Frontmatter
  2. Amplifiers
  3. Performance Analysis of FBG WDM System using Different Optical Amplifiers
  4. Devices
  5. Performance Evaluation of Two Dimensional Photonic Crystal Based All Optical AND/OR Logic Gates
  6. A Radio over Fiber (RoF) Based Single Sideband Modulated Passive Optical Network (PON) Using Mach Zender Modulator Based on Different Electrical Phase Shifts
  7. Analysis of Hybrid Buffer Based Optical Data Center Switch
  8. An Optical Majority Gate Using Photonic Crystal Based Nonlinear Resonant Cavity
  9. Analysis of AWG-Based Optical Data Center Switches
  10. Fibers
  11. Optimization of Concentration Quenching on Erbium Ytterbium Doped Wave Guide EYDWA Using for Extended Reach up to 160 Km of Hybrid Gigabit Passive Optical Networks and Free Space Optical Technologie “GPON-FSO”
  12. Networks
  13. On the Cost Minimization in Space Division Multiplexing Based Elastic Optical Networks
  14. Systems
  15. Incorporating SDC Module for ISI Compensation for a Long-Haul Co-OFDM System
  16. Performance Analysis of Free Space Optics and Inter-Satellite Communicating System Using Multiplexing Techniques – A Review
  17. To Overcome the Effects of Self-Phase Modulation in Single-Tone RoF System by Employing SSP Compensation Technique
  18. Analysis of Optical Wireless Communication Systems
  19. Investigation of Cross-Phase Modulation-Induced Crosstalk with Sub-Planck Higher-Order Dispersion Parameters in Optical Transmission Systems
  20. Performances Analysis of Novel Proposed Code for SAC-OCDMA System
  21. Design and Implementation of OFDM System using QPSK & QAM
  22. To Mitigate the Effect of Cross-Phase Modulation by Employing PC-DCF Technique in Multi-Tone RoF System
  23. Mitigating the Effects of Non-Linear Distortion Using Polarizers in Microwave Photonic Link
  24. Theory
  25. Improving Performance of Optical Networks by Using FRPI Algorithm
  26. Performance Evaluation of Novel Dynamic Data Replication Algorithm under Optical Burst Switching
  27. Performance Analysis of Relay Assisted Multihop Coherant OFDM System over Malaga Distribution with Pointing Errors
Downloaded on 10.9.2025 from https://www.degruyterbrill.com/document/doi/10.1515/joc-2018-0113/html
Scroll to top button