Journal of Engineering and Applied Sciences

Year: 2019
Volume: 14
Issue: 4
Page No. 1130 - 1137

Radio over Fiber Performance Evaluation in Optical Communication System Utilizing FBG under Different DCF Schemes for DPSK Format

Authors : Hussein Ahmed Mahmood and Riyadh Khlf Ahmed

References

Al-Raweshidy, H., 2002. Radio Over Fibre Technology for the Next Generation. In: Radio over Fiber Technologies for Mobile Communications Networks, Al-Raweshidy, H. and S. Komaki, (Eds.). Artech House, Inc, Norwood, Massachusetts, USA., ISBN:1-58053-148-2, pp: 183-214.

Charbonnier, B., H.L. Bras, P. Urvoas, Q.T. N'Guyen and M. Huchard et al., 2007. Upcoming perspectives and future challenges for ROF. Proceedings of the IEEE International Conference on Microwave Photonics, October 3-5, 2007, IEEE, Victoria, British Columbia, Canada, ISBN:978-1-4244-1167-2, pp: 21-23.

Gnauck, A.H. and P.J. Winzer, 2005. Optical phase-shift-keyed transmission. J. Lightwave Technol., 23: 115-130.
CrossRef  |  Direct Link  |  

Haykin, S., 2013. Digital Communication Systems. John Wiley & Sons, Hoboken, New Jersey, USA., ISBN:9780471647355, Pages: 800.

Kathpal, N. and A.K. Garg, 2016. Performance analysis of ROF system employed efficient modulation techniques based on BER and Q-factor. Intl. J. Innov. Res. Comput. Commun. Eng., 4: 176-182.
Direct Link  |  

Mahmood, H.A. and R.K. Ahmed, 2017. Performance evaluation of high data rate optical communication system utilizing FBG compensated dispersion schemes under different modulation techniques. Diyala J. Eng. Sci., 10: 94-106.
Direct Link  |  

Pena-Lopez, I., 2002. World telecommunication development report 2002: reinventing telecoms. Master Thesis, International Telecommunication Union, Geneva, Switzerland.

Pham, T.T., H.S. Kim, Y.Y. Won and S.K. Han, 2008. Bidirectional 1.25-Gbps WDM-PON with broadcasting function using a fabry-perot laser diode and RSOA. J. Opt. Soc. Korea, 12: 359-363.
CrossRef  |  Direct Link  |  

Pleros, N., K. Vyrsokinos, K. Tsagkaris and N.D. Tselikas, 2009. A 60 GHz radio-over-fiber network architecture for seamless communication with high mobility. J. Lightw. Technol., 27: 1957-1967.
CrossRef  |  

Pooja, M., S. Saroj and B. Manisha, 2015. Advantages and limitations of radio over fiber system. Intl. J. Comput. Sci. Mob. Comput., 4: 506-511.
Direct Link  |  

Sambaraju, R., J. Herrera, J. Marti, U. Westergren and D. Zibar et al., 2010. Up to 40 Gb/s wireless signal generation and demodulation in 75-110 GHz band using photonic techniques. Proceedings of the IEEE Conference on Microwave Photonics (MWP’10), October 5-9, 2010, IEEE, Montreal, Quebec, Canada, ISBN:978-1-4244-7824-8, pp: 1-4.

Vyas, A.K. and N. Agrawal, 2012. Radio over fiber: Future technology of communication. Int. J. Emerg. Trends Technol. Comput. Sci., 1: 233-237.
Direct Link  |  

Yadav, V. and A.K. Jaiswal, 2014. Radio over fiber technology. IOSR. J. Electr. Commun. Eng., 9: 83-87.
Direct Link  |  

Zibar, D., R. Sambaraju, R. Alemany, A. Caballero and J. Herrera et al., 2010. Radio-frequency transparent demodulation for broadband hybrid wireless-optical links. IEEE. Photonics Technol. Lett., 22: 784-786.
CrossRef  |  Direct Link  |  

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