DocumentCode :
1655682
Title :
A dynamic multi-wavelength simulink model for EDFA
Author :
Pinter, Stephen ; Jiang, Jean ; Fernando, Xavier
Author_Institution :
Ryerson Univ., Toronto, Ont., Canada
Volume :
4
fYear :
2004
Firstpage :
2077
Abstract :
The erbium doped fiber amplifier (EDFA) is an imperative element in DWDM networks. This all-optical amplifier enables simultaneous amplification of multiple wavelengths. Nevertheless, uneven gain across the usable wavelength region remains a concern. Understanding and modelling the dynamic characteristics of an EDFA is an important step towards achieving a flat gain spectrum. A Simulink model for investigating EDFA dynamics has been developed by Novak and Gieske (2002). Following their work, we have developed an enhanced version of the EDFA Simulink model with more capabilities. Previous results were verified for the given doped fiber length without noise. In addition, the forward amplified spontaneous emission (ASE) noise is added to the model and the optimum length is determined (with and without considering ASE) by simulation and used in all subsequent stages. A significant addition to the model is the ability to handle multiple channels using the absorption and emission coefficients previously obtained experimentally. The resulting model accurately represents EDFA gain dynamics and forward ASE. Simulation results show a 12 dB gain fluctuation across a 40 mn window per EDFA.
Keywords :
optical fibre amplifiers; superradiance; wavelength division multiplexing; DWDM networks; EDFA; Simulink model; absorption coefficients; all-optical amplifier; amplified spontaneous emission; dynamic multi-wavelength model; emission coefficients; erbium doped fiber amplifier; forward ASE noise; gain dynamics; multiple channels; optimum length; Doped fiber amplifiers; Erbium; Erbium-doped fiber amplifier; Mathematical model; Nonlinear equations; Optical attenuators; Optical fiber amplifiers; Optical pumping; Stimulated emission; Wavelength division multiplexing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electrical and Computer Engineering, 2004. Canadian Conference on
ISSN :
0840-7789
Print_ISBN :
0-7803-8253-6
Type :
conf
DOI :
10.1109/CCECE.2004.1347643
Filename :
1347643
Link To Document :
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