Abstract
Inter-satellite communication is a free-space optical technology which is used to establish communication between satellites in space. This work is focused on the transmission of 10 Gbps data over 4,000 km inter-satellite communication link by incorporating orthogonal frequency division multiplexing scheme. Moreover, a comparison of 4 quadrature amplitude modulation and 4 phase shift key encoding scheme is also presented in this work. The performance of proposed system is evaluated in terms of signal-to-noise ratio, total received power, radio-frequency spectrum and constellation diagrams.
References
1. Hecht J. Short history of laser development. Opt Eng 2010;49:091002–091002-23.10.1117/1.3483597Suche 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-2014-0004Suche in Google Scholar
3. Lutz E, Werner M, Jahn A. Satellite systems for personal and broadband communications. Springer Science & Business Media, 2012.Suche in Google Scholar
4. Amphawan A, Chaudhary S, Neo T-K. Hermite-Gaussian mode division multiplexing for free-space optical interconnects. Adv Sci Lett 2015;21:3050–3053.10.1166/asl.2015.6532Suche in Google Scholar
5. Chaudhary S, Amphawan A, Nisar K. Realization of free space optics with OFDM under atmospheric turbulence. Opt Int J Light Electron Opt 2014;125:5196–5198.10.1016/j.ijleo.2014.05.036Suche in Google Scholar
6. Chaudhary S, Bansal P, Lumb M. Effect of beam divergence on WDM-FSO transmission system. Int J Comput Appl 2014;93:28–32.10.5120/16181-5397Suche 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;75:34–38.10.5120/13077-0193Suche in Google Scholar
8. Sarangal H, Singh A, Malhotra J, Chaudhary S. A cost effective 100 Gbps hybrid MDM–OCDMA–FSO transmission system under atmospheric turbulences. Opt Quantum Electron 2017;49:184.10.1007/s11082-017-1019-2Suche in Google Scholar
9. Chaudhary S, Sharma A. 6 x 20Gbps long reach WDM-PI based high altitude platform inter-satellite communication system. Int J Comput Appl 2015;122:41–45.10.5120/21861-5192Suche in Google Scholar
10. 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-2015-0099Suche in Google Scholar
11. Amphawan A, Chaudhary S, Chan V. 2 x 20 Gbps-40 GHz OFDM Ro-FSO transmission with mode division multiplexing. J Eur Opt Soc Rapid Publ 2014;9.10.2971/jeos.2014.14041Suche in Google Scholar
12. Vimal K, Prince S. System analysis for optimizing various parameters to mitigate the effects of satellite vibration on inter-satellite optical wireless communication. In: IEEE International Conference on Signal Processing, Informatics, Communication and Energy Systems (SPICES), 2015, 2015:1–4.10.1109/SPICES.2015.7091492Suche in Google Scholar
13. Amphawan A, Chaudhary S, Samad H, Ahmad J, Poly-Tech K. Mode division multiplexing of LG and HG modes in Ro-FSO, 2015.10.11591/eecsi.v2.810Suche in Google Scholar
14. Sharma V. High speed CO-OFDM-FSO transmission system. Opt Int J Light Electron Opt 2014;125:1761–1763.10.1016/j.ijleo.2013.10.010Suche in Google Scholar
15. Sharma V, Chaudhary S. Implementation of hybrid OFDM-FSO transmission system. Int J Comput Appl 2012;58:37–40.10.5120/9305-3531Suche in Google Scholar
16. Sharma V, Kumar S. Hybrid OFDM-OSSB-RoF transmission system incorporating fiber Bragg grating. Opt Int J Light Electron Opt 2013;124:4670–4672.10.1016/j.ijleo.2013.01.068Suche in Google Scholar
17. 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.2015.6518Suche in Google Scholar
18. Armstrong J. OFDM for optical communications. J Lightwave Technol 2009;27:189–204.10.1109/JLT.2008.2010061Suche in Google Scholar
19. Arnon S. Performance of a laser μsatellite network with an optical preamplifier. JOSA A 2005;22:708–715.10.1364/JOSAA.22.000708Suche in Google Scholar PubMed
© 2019 Walter de Gruyter GmbH, Berlin/Boston
Artikel in diesem Heft
- Frontmatter
- Performance Evaluation of Proposed WDM Optical Link Using EDFA and FBG Combination
- PAPR Reduction in OFDM System Using Hybrid OICF and Phase Rotation Scheme
- Performance Analysis of 4×10 Gbps OFDM-PON System Over ROF Link
- Design of Optical SR Latch and Flip-Flop Using Electro-Optic Effect Inside Lithium–Niobate-Based Mach–Zehnder Interferometers
- Design of Photonic Crystal-Based Demultiplexer with High-Quality Factor for DWDM Applications
- Novel Architecture of PON based Two-dimensional Pre-coding
- Empirical Evaluation of 4 QAM and 4 PSK in OFDM-based Inter-Satellite Communication System
- Investigations on Integrated Optical Interference Couplers in PMMA for Visible and Infrared Range Fabricated by “Direct Writing” Excimer Laser Radiation
- Performance of a Direct-Detection Spot Mode Division Multiplexing in Multimode Fiber
Artikel in diesem Heft
- Frontmatter
- Performance Evaluation of Proposed WDM Optical Link Using EDFA and FBG Combination
- PAPR Reduction in OFDM System Using Hybrid OICF and Phase Rotation Scheme
- Performance Analysis of 4×10 Gbps OFDM-PON System Over ROF Link
- Design of Optical SR Latch and Flip-Flop Using Electro-Optic Effect Inside Lithium–Niobate-Based Mach–Zehnder Interferometers
- Design of Photonic Crystal-Based Demultiplexer with High-Quality Factor for DWDM Applications
- Novel Architecture of PON based Two-dimensional Pre-coding
- Empirical Evaluation of 4 QAM and 4 PSK in OFDM-based Inter-Satellite Communication System
- Investigations on Integrated Optical Interference Couplers in PMMA for Visible and Infrared Range Fabricated by “Direct Writing” Excimer Laser Radiation
- Performance of a Direct-Detection Spot Mode Division Multiplexing in Multimode Fiber