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首页> 外文期刊>International Journal of Electrical and Computer Engineering >Gain Flatness and Noise Figure Optimization of C-Band EDFA in 16-channels WDM System using FBG and GFF
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Gain Flatness and Noise Figure Optimization of C-Band EDFA in 16-channels WDM System using FBG and GFF

机译:使用FBG和GFF的16通道WDM系统中C波段EDFA的增益平坦度和噪声系数优化

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In this paper, Gain Flatness and Noise Figure of Erbium Doped Fiber Amplifier (EDFA) have been investigated in 16-channels Wavelength Division Multiplexing (WDM). Fiber Bragg Grating (FBG) is used in C-band with the aim to achieve flat EDFA output gain. The proposed model has been studied in detail to evaluate and to enhance the performance of the transmission system in terms of gain, noise figure and eye diagram of the received signals. To that end, various design parameters have been investigated and optimized, such as frequency spacing, EDF length and temperature. To enhance the transmission system performance in terms of gain flatness, the Gain Flattening Filter (GFF) has been introduced in the design. To prove the efficiency of the new design, the optical transmission system with optimized design parameters has been compared with a previous works in the literature. The simulation results show satisfactory performance with quasi-equalized gain for each channel of the WDM transmission system.
机译:本文在16通道波分复用(WDM)中研究了掺Do光纤放大器(EDFA)的增益平坦度和噪声系数。光纤布拉格光栅(FBG)用于C波段,旨在实现平坦的EDFA输出增益。已对所提出的模型进行了详细研究,以评估和增强传输系统在接收信号的增益,噪声系数和眼图方面的性能。为此,已经研究并优化了各种设计参数,例如频率间隔,EDF长度和温度。为了提高增益平坦度方面的传输系统性能,设计中引入了增益平坦化滤波器(GFF)。为了证明新设计的效率,将具有优化设计参数的光传输系统与文献中的先前工作进行了比较。仿真结果表明,对于WDM传输系统的每个通道,在准均衡增益下的性能令人满意。

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