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Enhancing the Gain of TDFA with Optimizing Length of TDF in DWDM System

Mandeep Singh Ramdev

Abstract


In this paper optimized gain of TDFA is achieved w.r.t variation of length of TDF. Mathematical model using improved rate equations of TDFA has been implemented using math CAD in this paper. An optimized gain of 27dB for 1460-1495nm wavelength range has been achieved when length of TDF is 7m.

 

Keywords: TDFA, TDF, DWDM


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References


Keiser G. Optical fiber communications. 4th edition, Tata Mc Graw Hill Education Pvt. Ltd

Mynbaev D.K., Schiner L.L. Fiber Optics Communications Technology. Pearson Education

Desurivire E. Erbium Doped Fiber Amplifier- Principles and Application. Hoboken, NJ: John Wiley & Sons

Becker P.C., Olsson N.A., Simpson J.R. Erbium Doped Fiber Amplifiers. New York Academics.

Sun Y., Zyschind J.L., Srivastava A.K. Average Inversion Level, Modelling and Physics of Erbium Doped Fiber Amplifiers.

Inderpreet K., Neena G. Optical Communications System. Chapter Title-Hybrid Fiber Amplifier. 103-122p.

Inderpreet K., Neena G. Optimization of Fiber Length for EDFA to Enhance the Channel Capacity DWDM Systems.

Qiao L., Vella P.J. ASE Analysis and Correction for EDFA Automatic Control.

Bourliaguet B. et al. Thulium doped fiber amplifier using 1055 nm laser diode pumping configuration. Electron. Lett. vol 38, no.10, 447-448p, 2002.

Peterka P., Faure B., Blame W., Karesek M., Dussardier B. Opt. qQuantum Electron. 36(2004), 201p.


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