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Position effect and number of Fiber Bragg Grating FBG in a high optimized optical link

Bouhafs Khalfallah, Driss Khodja Fatima Zahra, Marbouh Nourredin, Khalfallah Sara

Abstract


This paper discuses the optimal use Fiber Bragg Grating FBG as dispersion compensator. The simulated models of optical transmission system have been analyzed in term of eye diagram and Q factor using OptiSystem simulator. Three models of optical link are proposed in this work in order to optimize the use of the FBG’s in the way of dispersion compensation. A comparative study has been realized between the models proposed in this work. The output reading results show that the use of the FBG to compensate the chromatic dispersion stays a good idea. Several uses of the FBG’s are done in this work. The proposed model based on the use of two FBG’s separated with a Single Mode Fiber SMF presents the good performance of the system. The results reading using the double pre-compensation revealed itself to a better performance of the new system proposed.


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References


V. REFERENCES

Fundamentals of Photonics, Fiber Optics in Telecommunication, Nick Massa Springfield Technical Community College Springfield, Massachusetts, University of Connecticut 2000.

Joseph C.Palais. Fiber Optic Communications, Fifth Edition[M].Publishing House of Electronics Industry,2011.

M. Litchinitser, J. Eggleton, and B. Patterson, “Fiber Bragg Gratings for Dispersion Compensation in Transmission: Theoretical Model and Design Criteria for Nearly Ideal Pulse Recompression”, Journal of Light wave Technology, Vol. 15, No. 8, August 1997.

Ali Mahdi Hummadi, “Study Performance of the Fiber Bragg Grating as a Dispersion Compensator an Optical Transmission System Using OptiSystem Software”, JMAUC, vol. 5, no. 2, pp. 16-30, Dec. 2013.

M.A. Othman1, M.M. Ismail2, H.A. Sulaiman3, M.H. Misran4, M.A. Meor Said5, Y.A. Rahim6, A.N. Che Pee7, M.R. Motsidi8, “An Analysis of 10 Gbits/s Optical Transmission System using Fiber Bragg Grating (FBG),”IOSR Journal of Engineering (IOSRJEN) ISSN: 2250- 3021 Volume 2, Issue 7(July 2012).

“Fiber Bragg Gratings”, US A: Furukawa Electric North America, Inc., Light wave Inc., (2005).

Peng, Y., Qiu K., Wu B., Ji S., "Study on Characteristics of Optical Bistable Devices Based on Fiber Bragg Grating," OSA/ACP SPIE-OSA-IEEE 7630, 1-6 (2009).


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