Performance Analysis of a Linear Gaussian- and tanh-Apodized FBG and Dispersion Compensating Fiber Design for Chromatic Dispersion Compensation in Long-haul Optical Communication Networks

IF 1.8 4区 物理与天体物理 Q3 OPTICS International Journal of Optics Pub Date : 2022-09-02 DOI:10.1155/2022/5734420
Isidore Nsengiyumva, E. Mwangi, G. Kamucha
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引用次数: 1

Abstract

This paper investigates a novel compensation technique of dispersion effect mitigation using a combination of three- and four-stage-apodized fiber Bragg gratings (FBG) and dispersion compensating fiber (DCF) designs. Two designs using three-stage and four-stage FBG and DCF in combination have been proposed and compared for their performance in mitigating chromatic dispersion effects at 100 km SMF. The performance of each design has been evaluated using Q-factor results using linear Gaussian- and tanh-apodized fiber Bragg gratings. Each profile manifested different Q-factor results over a range of 5 dBm, 7.5 dBm, and 10 dBm of CW laser power over FBG grating lengths from 4 mm to 8 mm. The results obtained using the three-stage and four-stage FBG and DCF designs showed that an apodization profile using a tanh function can be used successfully with FBG lengths from 4 mm to 8 mm, regardless of the CW launched power. In contrast, the results using a Gaussian apodization profile for three- and four-stage FBG and DCF designs are applicable to FBG lengths from 5 mm to 8 mm. Designs using three-stage FBG and DCF generated higher Q-factor results than designs using only four-stage FBG and DCF, regardless of the launched power. The highest Q-factor of 18.58 was obtained for three-stage tanh-apodized FBG and DCF used in combination for an FBG length of 6 mm. The highest result obtained for a three-stage Gaussian-apodized FBG and DCF design was a Q factor of 17.13 using an FBG length of 8 mm. The proposed method was also compared to current similar works and can be successfully implemented in long-haul optical communication.
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线性高斯变迹和tanh变迹光纤光栅的性能分析及色散补偿光纤设计用于长途光通信网络中的色散补偿
本文研究了一种新的色散效应补偿技术,该技术将三级和四级变迹光纤布拉格光栅(FBG)和色散补偿光纤(DCF)设计相结合。已经提出了两种使用三级和四级FBG和DCF组合的设计,并对其在100 km SMF。使用线性高斯变迹和tanh变迹光纤布拉格光栅的Q因子结果对每个设计的性能进行了评估。每个剖面在5的范围内表现出不同的Q因子结果 dBm,7.5 dBm和10 FBG光栅长度为4时的连续激光功率dBm mm至8 使用三级和四级FBG和DCF设计获得的结果表明,使用tanh函数的变迹轮廓可以成功地用于FBG长度为4 mm至8 毫米,而与CW发射功率无关。相反,使用三级和四级FBG和DCF设计的高斯变迹轮廓的结果适用于5 mm至8 无论发射功率如何,使用三级FBG和DCF的设计产生的Q因子结果都高于仅使用四级FBG或DCF的的设计。三级变迹FBG和DCF组合使用FBG长度为6时,获得了18.58的最高Q因子 使用8的FBG长度,三级高斯变迹FBG和DCF设计获得的最高结果为17.13的Q因子 所提出的方法也与当前的类似工作进行了比较,并且可以成功地在长途光通信中实现。
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来源期刊
International Journal of Optics
International Journal of Optics Physics and Astronomy-Atomic and Molecular Physics, and Optics
CiteScore
3.40
自引率
5.90%
发文量
28
审稿时长
13 weeks
期刊介绍: International Journal of Optics publishes papers on the nature of light, its properties and behaviours, and its interaction with matter. The journal considers both fundamental and highly applied studies, especially those that promise technological solutions for the next generation of systems and devices. As well as original research, International Journal of Optics also publishes focused review articles that examine the state of the art, identify emerging trends, and suggest future directions for developing fields.
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