用于16×10Gbps DWDM传输系统的SHEMICONDUTOR光放大器的设计与性能分析

B. Ahuja, M. Meena, R. Meena
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引用次数: 3

摘要

在本文中,我们提出了使用半导体光放大器(SOA)的十六通道密集波分复用(DWDM)光传输系统。SOA放大器克服了光通信系统中传输信号的衰减效应。为了克服衰减效应,对前置、后置(增强器)和在线SOA技术进行了建模、分析和比较,以研究DWDM系统的性能。所提出的系统是为使用非归零(NRZ)调制格式的10Gbps网络设计的,其中色散补偿光纤(DCF)长度为14kms,单模光纤(SMF)使用Optisystem7.0模拟器长度为70kms。通过改变连续波激光源的输入功率(mw)参数,从眼形(眼图)、Q因子和误码率(BER)方面对所设计的系统的性能进行了探索和比较。观察到,对于所提出的光传输系统,In-line SOA放大器作为衰减补偿器提供了最佳性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DESIGN AND PERFORMANCE ANALYSIS OF SHEMICONDUCTOR OPTICAL AMPLIFIER FOR 16×10Gbps DWDM TRANSMISSION SYSTEMS
In this paper, we proposed sixteen channel dense-wavelength-divisionmultiplexing (DWDM) optical transmission system using semiconductor optical amplifiers (SOAs). The SOA amplifiers overcome the attenuation effects of transmitted signal in optical communication systems. To overcome attenuation effects, pre-, post (booster) and In-line SOAs techniques are modeled, analyzed and compared for investigating the performance of DWDM system. The proposed system is designed for 10Gbps network using non-return-tozero (NRZ) modulation format with dispersion compensation fiber (DCF) of length 14kms and a single mode fiber (SMF) of length 70kms using Optisystem7.0 simulator. Performance of designed system is explored and compared in terms of eye shape (eye-diagram), Q-factor and bit error rate (BER) by varying the input power (mw) parameter of CW laser source. It is observed that the In-line SOA amplifier provides the best performance as attenuation compensator for proposed optical transmission systems.
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