Submit your paper : editorIJETjournal@gmail.com Paper Title : Analyzation study of FSO Telecommunication System: Effect of Fog, Rain, and Snow at 1550 nm Wavelength ISSN : 2395-1303 Year of Publication : 2022 10.5281/zenodo.7079169 MLA Style: - Belal Alakhras , Prof. Huseyin Canbolat Analyzation study of FSO Telecommunication System: Effect of Fog, Rain, and Snow at 1550 nm Wavelength , Volume 8 - Issue 4 July- August 2022 International Journal of Engineering and Techniques (IJET) ,ISSN:2395-1303 , www.ijetjournal.org APA Style: - Belal Alakhras , Prof. Huseyin Canbolat Analyzation study of FSO Telecommunication System: Effect of Fog, Rain, and Snow at 1550 nm Wavelength , Volume 8 - Issue 4 July- August 2022 International Journal of Engineering and Techniques (IJET) ,ISSN:2395-1303 , www.ijetjournal.org Abstract The main goal of these papers is to analyze the Free space optical system with the weather condition of Ankara, the capital city of turkey. Governmental meteorological data support the analysis of this study of wireless communication systems; where it provides real measurement values. The advantages of the FSO system are the simplicity and the cost of installation in comparison with fiber optic systems that use light amplified as a source for transmission. This system is used in short-range applications, which are between buildings in cities or between skyscrapers, and sometimes between ships, as well as very complex military situations. The laser generally is used as a signal transmitter because it has a special optical advantage that allows it to travel long distances. Telecommunications engineers normally prefer to use semiconductor lasers because of their special properties and their cost-effectiveness. The obstacles that face the FSO system are different weather conditions such as rain, fog, air molecules, and snow. This study will investigate the FSO using a semiconductor laser according to the weather conditions of Ankara and the distance traveled taking into account a good high-quality data transmission. Reference [1] A. G. Alkholidi and K. S. Altowij, “Free Space Optical Communications — Theory and Practices,” in Contemporary Issues in Wireless Communications, InTech, 2014. doi: 10.5772/58884. [2] H. Manor and S. Arnon, “Performance of an optical wireless communication system as a function of wavelength,” in IEEE Convention of Electrical and Electronics Engineers in Israel, Proceedings, 2002, vol. 2002-January, pp. 287–289. doi: 10.1109/EEEI.2002.1178461. [3] A. Trichili et al., “Retrofitting FSO Systems in Existing RF Infrastructure: A Non-Zero Sum Game Technology,” May 2021, [Online]. Available: http://arxiv.org/abs/2105.07543 [4] Faruque Saleh, “Free Space Laser Communication withhAmbient Light Compensation,” 2021. [5] A. Dubey and S. Sahu, “Effect of Atmospheric Weather Condition on the performance of FSO,” in Proceedings of the 4th International Conference on Electronics, Communication and Aerospace Technology, ICECA 2020, Nov. 2020, pp. 223–229. doi: 10.1109/ICECA49313.2020.9297604. [6] M. Saeed Khan, “FSO Channel Characterization for Continental Fog Environments,” 2012. [7] L. A. COLDREN and S. W. CORZINE, 2-Diode_Lasers_and_Photonic_Integrated_Circuits (phyiscs) old book. 2001. [8] J. Buus, “Principles of semiconductor laser modelling,” 1985. [9] T. William. Houk, James. Poth, and J. W. (John W. Snider, Study guide to accompany University physics : Arfken, Griffing, Kelly, Priest. [10] M. Saeed Khan, “FSO Channel Characterization for Continental Fog Environments,” 2012. [11] I. Radiocommunication Bureau, “RECOMMENDATION ITU-R P.1817-1 - Propagation data required for the design of terrestrial free-space optical links,” 2012. [Online]. Available: http://www.itu.int/ITU-R/go/patents/en [12] N. Binti Ishak and A. Bakar Bin Ibrahim, “THE EFFECT OF ATMOSPHERE CONDITIONS ON PERFORMANCE OF FREE SPACE OPTICS IN MALAYSIA AT 1550NM,” 2015. [13] Robert Sheldon and John Burke, “Signal-to-noise ratio (S/N or SNR),” https://www.techtarget.com/, 2002. [14] CADENCE PCB, “What is Signal to Noise Ratio?,” https://resources.pcb.cadence.com/, 2006. [15] FOSCO Connect, “WHAT IS BER (BIT ERROR RATIO) AND BERT (BIT ERROR RATIO TESTER)?,” fiberoptics4sale.com, 2004. Keywords — Meteorological data, BER, Semiconductor Lasers, short-range application. |