Submit your paper : editorIJETjournal@gmail.com Paper Title : Investigation study and analysed for an optimum wavelength of FSO Telecommunication System in a weather condition (Fog, Rain, and Snow) with real data applied ISSN : 2395-1303 Year of Publication : 2022 10.5281/zenodo.7072284 MLA Style: -Belal Alakhras, Prof. Huseyin Canbolat Investigation study and analysed for an optimum wavelength of FSO Telecommunication System in a weather condition (Fog, Rain, and Snow) with real data applied , Volume 8 - Issue 5 September - October 2022 International Journal of Engineering and Techniques (IJET) ,ISSN:2395-1303 , www.ijetjournal.org APA Style: - Belal Alakhras, Prof. Huseyin Canbolat Investigation study and analysed for an optimum wavelength of FSO Telecommunication System in a weather condition (Fog, Rain, and Snow) with real data applied , Volume 8 - Issue 5 September - October 2022 International Journal of Engineering and Techniques (IJET) ,ISSN:2395-1303 , www.ijetjournal.org Abstract Modern communication systems adopt the principle of wireless communication as a basic choice in life in the city and nearby offices. Systems are often expensive and monopolized by governments and regimes, so many researchers around the world are interested in finding systems that can be of a cheap nature, have good communication quality, and can send data at an acceptable to excellent rate. Free space optical system is one of those systems that unlicensed and cost-effective system. In this study we found the optimum wavelength for FSO system and apply it with the three main weather condition fog, rain and snow. FSO using many techniques like a LOS (line of sight) and multibeam sending data where voice, video communication and data is achieved with high data rate by bidirectional full duplex connectivity[1]. The 850 nm wavelength is very suitable for FSO system because of it’s reliable, high-performance, and inexpensive transmitter and detector components. Also, they are generally available and commonly used in today’s service provider networks and transmission equipment[6]. Reference [1] A. Malik and P. Singh, “Free Space Optics: Current Applications and Future Challenges,” International Journal of Optics, vol. 2015. Hindawi Publishing Corporation, 2015. doi: 10.1155/2015/945483. [2] laseroptronics.com, “laseroptronics.com,” http://www.laseroptronics.com/index.cfm/id/57-66.htm. [3] H. A. Willebr and B. S. Ghuman, “Fiber Optics Without Fiber Beaming light through the air offers the speed of optics without the expense of fiber,” 2001. [4] As. Raja, “Investigations on Free space optics communication system.” [5] Faruque Saleh, “Free Space Laser Communication withhAmbient Light Compensation,” 2021. [6] B. Alakhras and H. Canbolat, “Analyzation study of FSO Telecommunication System: Effect of Fog, Rain, and Snow at 1550 nm Wavelength,” International Journal of Engineering and Techniques, vol. 8, 2022, [Online]. Available: http://www.ijetjournal.org [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] 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. [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 Keywords — Meteorological data, BER, Semiconductor Lasers, short-range application. |