CFP last date
22 April 2024
Reseach Article

6 x 20Gbps Long Reach WDM-PI based High Altitude Platform Inter-Satellite Communication System

by Sushank Chaudhary, Abhishek Sharma, Neetu
International Journal of Computer Applications
Foundation of Computer Science (FCS), NY, USA
Volume 122 - Number 22
Year of Publication: 2015
Authors: Sushank Chaudhary, Abhishek Sharma, Neetu
10.5120/21861-5192

Sushank Chaudhary, Abhishek Sharma, Neetu . 6 x 20Gbps Long Reach WDM-PI based High Altitude Platform Inter-Satellite Communication System. International Journal of Computer Applications. 122, 22 ( July 2015), 41-45. DOI=10.5120/21861-5192

@article{ 10.5120/21861-5192,
author = { Sushank Chaudhary, Abhishek Sharma, Neetu },
title = { 6 x 20Gbps Long Reach WDM-PI based High Altitude Platform Inter-Satellite Communication System },
journal = { International Journal of Computer Applications },
issue_date = { July 2015 },
volume = { 122 },
number = { 22 },
month = { July },
year = { 2015 },
issn = { 0975-8887 },
pages = { 41-45 },
numpages = {9},
url = { https://ijcaonline.org/archives/volume122/number22/21861-5192/ },
doi = { 10.5120/21861-5192 },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Journal Article
%1 2024-02-06T23:11:16.899705+05:30
%A Sushank Chaudhary
%A Abhishek Sharma
%A Neetu
%T 6 x 20Gbps Long Reach WDM-PI based High Altitude Platform Inter-Satellite Communication System
%J International Journal of Computer Applications
%@ 0975-8887
%V 122
%N 22
%P 41-45
%D 2015
%I Foundation of Computer Science (FCS), NY, USA
Abstract

InterSatellite communication is one of the remarkable technologies in the era of high altitude platform (HAP) communication system. This work is focused on the transmission of six channels, each carrying 20Gbps non return to zero (NRZ) data over inter-satellite link of 3500Km by adopting wavelength division multiplexing (WDM) and polarization interleaving (PI) scheme. The results are reported in terms of signal to noise ratio (SNR), total received power and eye diagrams which show successful transmission of 20x6Gbps data up to 3500km.

References
  1. A. H. Hashim, "Modeling and performance study of intersatellite optical wireless communication system", International Conference on Photonics (ICP), IEEE, pp. 1–4, 2010.
  2. M. A. Krainak, "Inter-satellite communications optoelectronics research at the Goddard Space Flight Center", Aerospace and Electo-system Magazine, IEEE, vol. 7, pp. 44–47, 1992.
  3. N. A. Mohammed, R. A. Mohammed, H. A. Moustafa, Improved performance of M-ary PPM in different free-space optical channels due to Reed Solomon code using APD, Int. J. Sci. Eng. Res. 2 (4) (2011) 1–4.
  4. COST 297, HAPCOS – High altitude platforms for communications and other services [online], 2007, February, Available at: www. hapcos. org.
  5. A. K. Majumdar, J. C. Ricklin, Free-Space Laser Communications, Principles and Advantages, Springer Science LLC, 233 Spring Street, New York, NY 10013, USA, 2008.
  6. J. Singh, V. K. Jain, Performance analysis of BPPM and M-ary PPM optical communication systems in atmospheric turbulence, IETE Tech. Rev. 25 (4) (2008)146–153.
  7. Sushank Chaudhary and Angela Amphawan "The Role and Challenges of Free-space Optical Systems" Journal of Optical Communications. Volume 0, Issue 0, ISSN (Online) 2191-6322, ISSN (Print) 01734911, DOI: 10. 1515/joc-2014-0004.
  8. E Rochat, R Dändliker, K Haroud, RH Czichy, U Roth, D Costantini, R Holzner, "Fiber amplifiers for coherent space communication", IEEE J Sel Topics Quantum Electron 7(1), 64–81 (2001).
  9. A. Polishuk, S. Arnon, "Optimization of a laser satellite communication system with an optical preamplifier", J. Optical Society of America. Vol. 21, No. 7, pp 13071315, July 2004.
  10. Sushank Chaudhary, Preety Bansal and Gurdeep Singh "Implementation of FSO Network under the Impact of Atmospheric Turbulences" International Journal of Computer Applications 75(1):34-38, August 2013.
  11. Vishal Sharma and Sushank Chaudhary "Implementation of Hybrid OFDM-FSO Transmission System" International Journal of Computer Applications 58(8):37-40, November 2012.
  12. Sushank Chaudhary, Angela Amphawan, Kashif Nisar, "Realization of free space optics with OFDM under atmospheric turbulence", Optik - International Journal for Light and Electron Optics, Available online 8 July 2014, ISSN 0030-4026
  13. Vishal Sharma, Sushank, "High speed CO-OFDM-FSO transmission system" , Optik - International Journal for Light and Electron Optics, Volume 125, Issue 6, March 2014, Pages 1761-1763, ISSN 0030-4026
  14. A. Polishuk, S. Arnon, 'Optimization of a laser satellite communication system with an optical preamplifier', J. Optical Society of America. Vol. 21, No. 7, pp 1307-1315, July 2004.
  15. Sushank Chaudhary, Preety Bansal and Manisha Lumb "Effect of Beam Divergence on WDM-FSO Transmission System" International Journal of Computer Applications 93(1):28-32, May 2014.
  16. Ramandeep Kaur and Sushank Chaudhary "Simulative Investigation of Laser Line-width and Channel Spacing for Realization of DWDM Systems under the Impact of Four Wave Mixing" Journal of Optical Communications. Volume 35, Issue 2, Pages 157–165, ISSN (Online) 2191-6322, ISSN (Print) 01734911, DOI: 10. 1515/joc-2013-0152, March 2014.
  17. Sushank Chaudhary, Saurabh Sharma and Praveen "Role of Turbulences in WDM-Polarisation Interleaving Scheme based Inter-Satellite Communication system" International Journal of Computer Applications Vol. 104 – No 10, Oct. 2014.
Index Terms

Computer Science
Information Sciences

Keywords

InterSatellite Communication High Altitude Platforms (HAP) Wavelength Division Multiplexing (WDM) Polarization Interleaving (PI)