Home High-Speed 120 Gbps AMI-WDM-PDM Free Space Optical Transmission System
Article
Licensed
Unlicensed Requires Authentication

High-Speed 120 Gbps AMI-WDM-PDM Free Space Optical Transmission System

  • Kamal Kishore Upadhyay EMAIL logo , Saumya Srivastava , N. K Shukla and Sushank Chaudhary
Published/Copyright: August 1, 2017
Become an author with De Gruyter Brill

Abstract

Free space optical (FSO) communication systems are gaining high popularity from the last decade due to its various advantages such as no license spectrum, low-cost implementation etc. In this work, 160 Gbps data is transmitted over 8 km FSO link by adopting alternate mark inversion (AMI), wavelength division multiplexing (WDM) and polarization division multiplexing (PDM) schemes. The results are reported in terms of Q factor, bit error rate, signal to noise ratio, total received power and eye diagrams.

References

1. Amphawan A, Chaudhary S, Chan V. 2×20 Gbps-40 GHz OFDM Ro-FSO transmission with mode division multiplexing. J Eur Opt Soc Rapid Publ 2014;9.10.2971/jeos.2014.14041Search in Google Scholar

2. Chaudhary S, Amphawan A. The role and challenges of free-space optical systems. J Opt Commun 2014;35:327–334.10.1515/joc-2014-0004Search in Google Scholar

3. Chaudhary S, Amphawan A, Nisar K. Realization of free space optics with OFDM under atmospheric turbulence. Optik Int J Light Opt 2014;125:5196–5198.10.1016/j.ijleo.2014.05.036Search in Google Scholar

4. Sharma V. High speed CO-OFDM-FSO transmission system. Optik Int J Light Opt 2014;125:1761–1763.10.1016/j.ijleo.2013.10.010Search in Google Scholar

5. Sharma V, Chaudhary S. Implementation of hybrid OFDM-FSO transmission system. Int J Comput Appl 2012;58:37–40.10.5120/9305-3531Search in Google Scholar

6. Sharma V, Kumar S. Empirical evaluation of wired-and wireless-hybrid OFDM–OSSB–RoF transmission system. Optik Int J Light Opt 2013;124:4529–4532.10.1016/j.ijleo.2013.01.045Search in Google Scholar

7. Chaudhary S, Bansal P, Singh G. Implementation of FSO network under the Impact of atmospheric turbulences. Int J Comput Appl 2013;75:34–38.10.5120/13077-0193Search in Google Scholar

8. Amphawan A, Chaudhary S. Free-space optical mode division multiplexing for switching between millimeter-wave picocells. In: International conference on optical and photonic engineering (icOPEN2015), 2015:95242H-95242H-6.10.1117/12.2189694Search in Google Scholar

9. Amphawan A, Chaudhary S, Gupta BB. Secure MDM-OFDM-Ro-FSO system using HG modes. Int J Sens Wirel Commun Control 2015;5:13–18.10.2174/2210327905999150521110316Search in Google Scholar

10. Amphawan A, Chaudhary S, Din R, Omar MN. 5Gbps HG 0, 1 and HG 0, 3 optical mode division multiplexing for RoFSO. In: 2015 IEEE 11th international colloquium on Signal Processing & Its Applications (CSPA), 2015:145–149.10.1109/CSPA.2015.7225635Search in Google Scholar

11. Bansal U, Kaur K, Chaudhary S. Role of laser linewidth in high speed DWDM system by incorporating duobinary modulation scheme. Int J Comput Appl 2015;109:30–32.10.5120/19267-1042Search in Google Scholar

12. Chaudhary S, Bansal P, Lumb M. Effect of beam divergence on WDM-FSO transmission system. Int J Comput Appl 2014;93:28–32.10.5120/16181-5397Search in Google Scholar

13. Chaudhary S, Sharma S. Role of turbulences in WDM-polarization interleaving scheme based inter-satellite communication system. Int J Comput Appl 2014;104:30–32.10.5120/18235-9224Search in Google Scholar

14. Kaur R, Chaudhary S. Simulative investigation of laser line-width and channel spacing for realization of DWDM systems under the impact of four wave mixing. J Opt Communications 2014;35:157–165.10.1515/joc-2013-0152Search in Google Scholar

15. Robinson S, Jasmine S. Performance analysis of hybrid WDM-FSO system under various weather conditions. Frequenz 2016;70:433–441.10.1515/freq-2015-0287Search in Google Scholar

16. Hossain F. Impact of travelling wave semiconductor optical amplifier on WDM-FSO system under fog attenuation. Int J Sci Res 2014;3:235–238.Search in Google Scholar

17. Chaudhary S, Sharma A. 6×20Gbps long reach WDM-PI based high altitude platform inter-satellite communication system. Int J Comput Appl 2015;122:41–45.10.5120/21861-5192Search in Google Scholar

18. Chaudhary S, Sharma A, Chaudhary N. 6×20 Gbps hybrid WDM–PI inter-satellite system under the influence of transmitting pointing errors. J Opt Commun 2016;37:375–379.10.1515/joc-2015-0099Search in Google Scholar

19. Chaudhary S, Chaudhary N, Sharma S, Choudhary B. High speed inter-satellite communication system by incorporating hybrid polarization-wavelength division multiplexing scheme. J Opt Commun. DOI:10.1515/joc-2016-0107.10.1515/joc-2016-0107Search in Google Scholar

20. Power MJ. All-optical signal processing using semiconductor optical amplifiers for next generation optical networks, 2014.Search in Google Scholar

21. Amphawan A, Chaudhary S, Elfouly T, Abualsaud K. Optical mode division multiplexing for secure Ro-FSO WLANs. Adv Sci Lett 2015;21:3046–3049.10.1166/asl.2015.6518Search in Google Scholar

Received: 2017-06-02
Accepted: 2017-06-15
Published Online: 2017-08-01
Published in Print: 2019-10-25

© 2019 Walter de Gruyter GmbH, Berlin/Boston

Articles in the same Issue

  1. Frontmatter
  2. Amplifiers
  3. Performance Optimization of Optical Amplifiers for High Speed Multilink Optical Networks using Different Modulation Techniques
  4. Investigations of Different Amplifiers in 16 × 40 Gb/S WDM System
  5. Effect of Crosstalk in Super Dense Wavelength Division Multiplexing System using Hybrid Optical Amplifier
  6. Evaluation of Gain Spectrum of Silica-Based Single/Dual-Pumped Thulium-Doped Fiber Amplifier (TDFA) by Optimizing Its Physical and Pumping Parameters in the Scenario of Dense Wavelength Division Multiplexed Systems (DWDM)
  7. Devices
  8. Design of One-Bit Magnitude Comparator using Photonic Crystals
  9. A Novel Scheme for UDWDM-PON Broadband Access Network Using Injection-Locked Phase-to-Intensity Modulation Converter
  10. Loss-Less Elliptical Channel Drop Filter for WDM Applications
  11. Investigations with Reversible Feynman Gate and Irreversible Logic Schematics
  12. Analysis and Design of Coherent Combining of two Q-Switched Fiber Laser in Mach-Zehnder Type Cavity
  13. Fibers
  14. Proposed Square Lattice Photonic Crystal Fiber for Extremely High Nonlinearity, Birefringence and Ultra-High Negative Dispersion Compensation
  15. Ultra-low Loss with Single Mode Polymer-Based Photonic Crystal Fiber for THz Waveguide
  16. Measurements
  17. Investigation on Full Duplex WDM Hybrid Sensor to Measure the Strain
  18. Networks
  19. An Easy In-Service Optical IP Network System for Residential Complex, Employing 1550 nm-Band CWDM and Layer-3 Switch
  20. Systems
  21. High-Speed 120 Gbps AMI-WDM-PDM Free Space Optical Transmission System
  22. Impact of Different Modulation Data Formats on DWDM System Using SOA With Narrow-Channel Spacing
  23. Analysis of Atmospheric Turbulence on Free Space Optical System using Homotopy Perturbation Method
  24. Visible Light Communication – The Journey So Far
  25. Performance Investigation of 2-D Optical Orthogonal Codes for OCDMA
  26. Performance Analysis of 2-D Prime Codes Encoded Optical CDMA System
  27. An Approximation for BER of Optical Wireless System under Weak Atmospheric Turbulence using Point Estimate
Downloaded on 16.9.2025 from https://www.degruyterbrill.com/document/doi/10.1515/joc-2017-0086/html
Scroll to top button