Raman/EDFA混合系统增强光网络中的光信号

Q3 Engineering Journal of Communications Pub Date : 2023-10-01 DOI:10.12720/jcm.18.10.621-628
Taha Abdulsalam Taha, Saad Ahmed Ayoob, Mohammad Tariq Yaseen
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引用次数: 0

摘要

本文利用连接摩苏尔大学第一校区和第三校区的光纤网络传输光信号的放大特性,对拉曼散射和掺铒光纤放大器(EDFA)组成的混合光信号放大系统进行了仿真。分别对两种光信号放大器进行了研究,观察了两种光信号放大器对光信号参数q因子、噪声系数、信噪比和增益的影响。采用Optisystem ver.7.0软件对系统进行仿真。结果表明,喇曼散射和EDFA混合系统能够有效地工作。输出信号功率电平高于输入信号功率电平,从(16微瓦)增加到(83毫瓦)。对于每个频率,增益为正,噪声系数相对较高。虽然,这表明一些噪声引入了系统。输出信噪比(OSNR)高(55 dB)。此外,该系统仍然能够保持较高的信噪比。结果表明,拉曼散射和EDFA混合系统是一种有价值的光信号放大技术,用于连接摩苏尔大学第一和第三校区的光网络。
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Raman/EDFA Hybrid System to Enhance the Optical Signal in the Optical Network
In this paper, a hybrid optical signal amplification system that includes Raman scattering and Erbium-doped fiber amplifier (EDFA) was simulated to take advantage of the amplification properties of the optical signal transmitted through the optical fiber network that connects the first and third campuses of the University of Mosul. The two types of optical signal amplifiers were studied individually and together, and the effect was observed in each case on the optical signal parameters such as the Q-factor, noise figure, signal-to-noise ratio, and gain. Optisystem ver.7.0 software was used to simulate the proposed system. The results showed that the Raman scattering and EDFA hybrid systems functioned effectively. The output signal power level is higher than the input signal power level that increased from (16 microwatts) to (83 mill watts). For each frequency, the gain is positive and the noise figure is relatively high. Although, this indicates that some noise introduced into the system. The output signal to noise ratio (OSNR) is high (55 dB). Moreover, the system is still able to maintain a high signal-to-noise ratio. The obtained results showed that the Raman scattering and EDFA hybrid system is a worthwhile technique for amplifying optical signals for the optical network connecting the first and third campuses of the University of Mosul.
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来源期刊
Journal of Communications
Journal of Communications Engineering-Electrical and Electronic Engineering
CiteScore
3.40
自引率
0.00%
发文量
29
期刊介绍: JCM is a scholarly peer-reviewed international scientific journal published monthly, focusing on theories, systems, methods, algorithms and applications in communications. It provide a high profile, leading edge forum for academic researchers, industrial professionals, engineers, consultants, managers, educators and policy makers working in the field to contribute and disseminate innovative new work on communications. All papers will be blind reviewed and accepted papers will be published monthly which is available online (open access) and in printed version.
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