基于啁啾光纤光栅的多波段色散补偿

Muhammad Towfiqur Rahman, Tasnim Sabiha
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引用次数: 0

摘要

光纤bragg光栅在光通信中的应用是一个新兴的领域。最近,人们对啁啾光纤光栅的创建和使用产生了很大的兴趣,这种光纤光栅的特点是光纤芯内折射率的非均匀调制。脉冲展宽中的色散和光探测器的码间干扰对高速光网络有重要影响。光纤传输损耗低的波长范围是光纤通信主要进行的波长范围。五个波段组成了这个低损耗波长区,其范围为1260至1625纳米。在本研究中,我们比较了三种不同啁啾光纤光栅长度的不同光学波段,以解决包含10 Gbps数据速度的色散补偿问题。采用四种UFBG和CFBG相结合的设计技术,对单模光纤长度和品质因子(Q)的改善最小。通过实现质量因子(Q)的有效SMF使用组合提高。通过对可用SMF的质量因子Q进行校正,获得了较好的色散校正效果。我们考虑了q因子、眼图和误码率作为系统的性能指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dispersion Compensating using Chirped Fiber Bragg Grating for Multiple Optical Bands
Applications of fiber bragg gratings (FBG) in optical communication are a growing area. Recently, there has been a lot of interest in the creation and use of chirped FBGs, which are distinguished by a non-uniform modulation of the refractive index within an optical fiber core. Chromatic dispersion (CD) in pulse broadening and inter symbol interference (ISI) at the light detector significantly affect high-speed optical networks. The wavelength range where optical fibers have a low transmission loss is where fiber-optic communication is mostly carried out. Five wavelength bands make up this low-loss wavelength zone, which has a range of 1260 to 1625 nm. In this study we compared three different optical bands with different chirped FBG lengths to tackle the chromatic dispersion compensation containing 10 Gbps data speed. The single-mode fiber length and quality factor (Q) are minimally improved by the combination of four UFBG and CFBG design technique. By implementing quality factor (Q) of the available SMF are improved by using the combination. The best results have been seen for correcting chromatic dispersion by implementing quality factor (Q) of the available SMF are improved by using the combination. We consider Q-factor, eye diagram, and BER as a performance indicator of the system.
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