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LAZER TABANLI SU ALTI HABERLEŞME SİSTEM TASARIMI

DESIGN of LASER BASED UNDERWATER COMMUNICATION SYSTEM

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Abstract (2. Language): 
In this study, laser based communication system was used as an alternative to the communication executed with wires by underwater teams. Green light was employed as the carrier signal for the reason that it could proceed underwater with lowest refraction apart from the refraction of red and yellow light. Sound signals were transported from one point to another by imposing them on green light, in other words by using modulation process. Communication between two underwater teams was performed reciprocally.
Abstract (Original Language): 
Bu çalışmada, su altı timlerinin telli olarak gerçekleştirdikleri haberleşmeye alternatif olarak lazerin kullanıldığı bir haberleşme sistemi gerçekleştirilmiştir. Yeşil ışık, su altında en fazla kırılmadan ilerleyebildiği için taşıyıcı olarak kullanılmıştır. Ses işaretleri, yeşil ışığın üzerine bindirilerek yani genlik modülasyonu işlemi gerçekleştirilerek bir noktadan diğer bir noktaya iletilmiştir. İki su altı timindeki haberleşme çift taraflı gerçekleştirilmiştir.
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REFERENCES

References: 

[1] Sui, M., Yu, X. and Zhou, Z., “The Modified PPM Modulation for Underwater
Wireless Optical Communication”, International Conference on Communication
Software and Networks, 173-177, 2009.
[2] Chen, M., Zhou, S. and Li, T., “The Implementation of PPM in Underwater Laser
Communication System”, International Conference on Communications, Circuit and
Systems Proceedings, 1901-1903, 2006.
[3] Li, T., Zhou, H. and Sun, L., “The Study of LDPC Code Applied to Underwater Laser
Communication”, Conference on Lasers and Electro-Optics, 1-2, 2009.
[4] Arnon, S., “Underwater Optical Wireless Communication Network”, Optical
Engineering, 49 (1), 2010.
[5] Farr, N., Bowen, A., Ware, J. Ve Pontbriand, C., “An Integrated, Underwater
Optical/Acoustic Communications Systems”, IEEE, 2010.
[6] Bruno, T.J. and Svoronos, P.D.N., CRC Handbook of Fundamental Spectroscopic
Correlation Charts, CRC Taylor&Francis Press, 2006.
[7] Giles, J.W. and Bankman, I.N., “Underwater Optical Communications Systems, Part 2:
Basic Design Considerations”, Military Communications Conference IEEE, 1700-
1705, 2005.
[8] Varol, H.S. and Yağımlı, M., Optoelectronics&Fiber Optic, Beta Publishing, 2008.
[9] Killen, H.B., Modern Electronics Communication Techniques, Engineering Industry
Training Board, 1994.

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