Optimized gain EDFA of different lengths with an influence of pump power

S. Semmalar, Poonkuzhali, P. Devi
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引用次数: 17

Abstract

This Paper describes the simulation models of EDFA(Erbium Doped Fiber Amplifier) of different Lengths(10m, 50m and 120m) with optimized Gain and maintained noise figure is obtained using single pumping with the wavelengths 980nm or 1480nm and the results are plotted with an influence of various Pump power. In DWDM networks EDFA'S are an imperative elements and are regarded as a cost effective replacement of classical optoelectronic regenerative repeaters EDFA plays an important role in improvement of performance of optical fiber transmission systems. The proposed model consists of Input source with multiple channels, pumping source with the wavelengths 980nm or 1480nm and Isolator. The Erbium doped fiber amplifier's gain which appears in the signal to noise ratio expression is computed from the simulation. The resulting models accurately represent EDFA optimized gain. Simulation results, EDFA length of 10m and with 980nm pump of power 0.22W gives the gain of 40.17DB and for the same length of EDFA with 980nm pump of power 0.62W gives the optimized gain of 44.3DB and also with 980nm pump of power 1W gives the maximum optimized gain of 46DB and compared the results of Gain and noise figure with the wavelength of 1480nm and also with different lengths. This is applicable in Network reconfiguration and Multi-vendor networks and also addition of new services and wavelengths.
在泵浦功率影响下,优化了不同长度的增益EDFA
本文描述了在980nm和1480nm波长单次泵浦的情况下,获得了不同长度(10m、50m和120m)的EDFA(掺铒光纤放大器)在优化增益和保持噪声系数下的仿真模型,并绘制了不同泵浦功率对仿真结果的影响图。在DWDM网络中,EDFA是必不可少的元件,被认为是替代传统光电再生中继器的一种经济有效的方法,EDFA对提高光纤传输系统的性能起着重要的作用。该模型由多通道输入源、波长为980nm或1480nm的抽运源和隔离器组成。通过仿真计算得到了在信噪比表达式中出现的掺铒光纤放大器的增益。所得模型准确地表示了EDFA优化后的增益。仿真结果表明,长度为10m的EDFA,功率为0.22W的980nm泵浦的增益为40.17DB,相同长度的EDFA,功率为0.62W的980nm泵浦的优化增益为44.3DB,功率为1W的980nm泵浦的最大优化增益为46DB,并比较了波长为1480nm和不同长度时的增益和噪声系数结果。这适用于网络重构和多厂商网络,也适用于增加新的业务和波长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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