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Study Of Gain Flatness For Multi-channel Amplification In Single Stage Edfa For Wdm Applications

机译:WDM应用中单级Edfa多通道放大的增益平坦度研究

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摘要

In this paper, gain flatness is studied for simultaneous 16-ITU-T channel amplifications at C-band (1,532-1,558 nm) in a single stage EDFA for WDM application at different average inversion levels. The inversion levels are varied due to the change of the input signal levels from the targeted operating point and also for dropping few numbers of channels. Specially designed gain flattening filter (GFF) is used in order to get the flat gain with gain variation ±0.5 dB for -20 dBm/ch input signal power (total input signal power is -8.0 dBm) at a fixed average inversion level which is maintained by proper selection of optimum fibre length and pump power. A specific loss spectrum of GFF is obtained by writing a chirped fibre Bragg grating of length 20 mm. Gain variations are studied by changing the total input signal levels from -8.0 dBm to -20.0 dBm and maintained within 20.0 ± 0.5 dB by using automatic gain control (AGC) circuit. About 15 out of 16 channels are dropped and observed ±0.5 dB gain-variation which is an important parameter in optical network system.
机译:在本文中,研究了在单级EDFA中针对WDM应用在不同平均反向电平下在C波段(1,532-1,558 nm)同时进行16-ITU-T信道放大的增益平坦度。由于目标操作点的输入信号电平发生了变化,并且由于丢失了几个通道,因此反相电平也有所变化。为了获得-20 dBm / ch的输入信号功率(总输入信号功率为-8.0 dBm),在固定的平均反相电平下,使用经过特殊设计的增益平坦化滤波器(GFF),以获得增益变化为±0.5 dB的平坦增益。通过适当选择最佳的光纤长度和泵浦功率来保持。通过写入长度为20 mm的chi光纤布拉格光栅可获得GFF的特定损耗谱。通过将总输入信号电平从-8.0 dBm更改为-20.0 dBm来研究增益变化,并使用自动增益控制(AGC)电路将其保持在20.0±0.5 dB之内。 16个信道中约有15个被丢弃,并观察到±0.5 dB的增益变化,这是光网络系统中的重要参数。

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