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首页> 外文期刊>IEE Proceedings. Part J >Design of gain-shifted erbium-doped fibre amplifiers for WDM applications
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Design of gain-shifted erbium-doped fibre amplifiers for WDM applications

机译:用于WDM应用的增益漂移掺-光纤放大器的设计

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摘要

Design criteria for gain-shifted erbium-doped fibre amplifiers (GS-EDFAs) determined for multiwavelength operation in the 1580 nm wavelength band are presented. To achieve a flat gain profile and low noise figure, special care must be taken when selecting erbium-doped fibre (EDF) length, pump power and pumping configuration. The design criteria are based on the results of computer analysis performed with the aid of a comprehensive large-signal numerical model which takes into account time variation effects in an erbium-doped fibre amplifier. It follows from the performed analysis that flat gain spectrum in the wavelength range 1570 to 1605 nm can be achieved with co-, counter-, and unsymmetrical bidirectional pumping configuration. Unidirectional pumping requires, however, more pump power than the unsymmetrical bidirectional scheme. In order to achieve low noise figure the codirectional part of pump power must be much higher that the counterdirectional one. Surviving channel power excursions in a 16-channel WDM network containing six GS-EDFAs have been found comparable to those in a similar network with conventional 1550 nm EDFAs.
机译:提出了为在1580 nm波段内进行多波长操作而确定的增益偏移掺光纤放大器(GS-EDFA)的设计标准。为了获得平坦的增益曲线和低噪声系数,在选择掺ped光纤(EDF)的长度,泵浦功率和泵浦配置时必须格外小心。设计标准基于计算机分析的结果,该分析是借助于综合的大信号数值模型进行的,该模型考虑了掺-光纤放大器中的时间变化影响。从执行的分析中可以得出,通过共,反和非对称双向泵浦配置可以实现1570至1605 nm波长范围内的平坦增益谱。但是,单向泵送比非对称双向方案需要更多的泵送功率。为了获得低噪声系数,泵浦功率的同向部分必须比反向的功率高得多。已经发现,在包含六个GS-EDFA的16通道WDM网络中,尚存的信道功率偏移与具有常规1550 nm EDFA的类似网络中的信道功率偏移相当。

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