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Transactions on Machine Design (TMD)
 

A Model for Measuring the Outage Conditions in the Presence of Atmospheric Turbulence
Yordan Kovachev, Tsvetan Mitsev
Technical University of Sofia 8 Kl. Ohridski Blvd, Sofia 1000 Bulgaria., Technical University of Sofia 8 Kl. Ohridski Blvd, Sofia 1000 Bulgaria
Abstract: We propose for assessing the outage conditions of FSO system using optimal parameters. We deployed the laser beam propagation with the presence of normal atmospheric turbulence and random jitter. We further derived the closed from expressions for measuring the outage conditions.
Keywords: Random Jitter, Gamma-gamma Distribution, Atmospheric Turbulence, Log-normal Distribution, Outage Probability A Model for Measuring the Outage Conditions in the Presence of Atmospheric Turbulence
DOI:
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References:

[1] Nor, N. A. M., Ghassemlooy, Z., Zvanovec, S., Bhatnagar, M.R. (2016). Comparison of Optical and Electrical based Amplifyand-Forward Relay-Assisted FSO Links over Gamma-Gamma Channels, 10th International Symposium on Communication Systems, Networks and Digital Signal Processing (CSNDSP), 2016.
[2] Mishra, N., Kumar, D. S. (2016). Outage Analysis of Relay Assisted FSO Systems over K-Distribution Turbulence Channel, International Conference on Electrical, Electronics, and Optimization Techniques (ICEEOT).
[3] Ben Naila, C., Bekkali, A., Wakamori, K., Matsumoto, M. (2011). Performance Analysis of CDMA-Based Wireless Services Transmission Over a Turbulent RF-on-FSO Channel, Journal of Optical Communications and Networking, 3 (5) 475-486, 2011.
[4] Prokes, A. (2009). Modelling of Atmospheric turbulence Effect on Terrestrial FSO Link, Radioengineering, 18 (1) (April).
[5] Kim, I., Korevaar, E. (2011). Availability of Free-Space Optics (FSO) in Hybrid FSO/RF Systems, In: Proceedings Optical Wireless Communications IV, SPIE 4530, (November 27, 2011).
[6] Prokes, A., Brancik, L. (2012). Degradation of Free Space Optical Communication Performance Caused by Atmospheric Turbulence, In: Proceedings IEEE, 2nd International Conference on Advances in Computational Tools for Engineering Applications, p 338-341.
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[9] Poliak, J., Pezzei, P., Leitgeb, E., Wilfert. O. (2013). Analytical Expression of FSO Link Misalignments Considering Gaussian Beam, 18th European Conference on Network and Optical Communications and 8th Conference on Optical Cabling and Infrastructures, Graz, Austria, p 99-103.
[10] Kovachev, Y., Mitsev, Ts. (2014). FSO Availability Depending on the Meteorological Conditions, 9th International Conference on Communications, Electromagnetism and Medical Applications (CEMA '14), (October 16, 2014).
[11] Mitsev, Ts., Kovachev, Y. (2016). Availability of Free-Space Optical Systems Depending on Atmospheric Conditions and System Parameters, International Journal of Wireless Communications and Networking Technologies, 5 (3), (April – May).
[12] Prokes, A. (2009). Modelling of Atmospheric Turbulence Effect on Terrestrial FSO Link, Radioengineering, 18 (1) (April).
[13] Tsiftsis, T. A. (2008). Performance of Heterodyne Wireless Optical Communication Systems over Gamma-Gamma Atmospheric Turbulence Channels, Electronics Letters, 28th February 2008, 44 (5).
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[15] Gradshteyn, I.S., Ryzhik, I. M. (2000). Table of Integrals, Series, and Products, Academic Press, New York, 2000, 6th edn.


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