大容量系统中光纤损伤缓解技术综述

Ali Hayder Abdul Kareem, I. Murdas
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引用次数: 2

摘要

近几十年来,由于新的数字应用和服务的增长,对网络容量的需求一直在稳步增长。在处理高容量数据速率需求时,光纤支持解决和避免数据流量瓶颈。当使用光纤作为传播介质时,会出现光纤色散和非线性畸变效应。光纤中的色散是一种线性效应,可以用色散补偿光纤来补偿。相反,非线性效应是现代通信系统中最不利的方面之一,它会引起互调失真、相邻信道干扰、相位失真和谐波失真。在大多数通信系统中,主要的光纤非线性效应是由于折射率随信号强度的变化而引起的克尔非线性。本文综述了光纤非线性补偿技术的研究进展,以最大限度地减少非线性失真的影响,从而提高光通信网络的性能。结果表明,补偿方式分为数字补偿和光学补偿两种。光学补偿在有效改善系统性能和提高非线性影响下的数据速率方面比数字补偿有更好的优势,特别是对于先进的大容量系统。
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A Comprehensive Survey of Fiber Impairment Mitigation Technologies in High Capacity Systems
The demand for network capacity has been steadily increasing in recent decades due to the growth of new digital applications and services. Optical fiber supports to solve and avoid data traffic bottlenecks when dealing with high capacity data rate requirements. When fiber is used as a propagation medium, fiber dispersion and nonlinear distortions effects appear. Dispersion in optical fiber is a linear effect that may be compensated by a dispersion compensating fiber. In contrast, the nonlinearity effect is one of the most unfavorable aspects of modern communication systems causing intermodulation distortion, adjacent channel interference, phase distortion, and harmonic distortion. In the majority of communication systems, the primary fiber nonlinear effect is the Kerr nonlinearity caused by the refractive index dependency on signal intensity. The purpose of this paper is to summarize a survey of fiber nonlinearity compensation techniques to minimize the effect of nonlinear distortion that improve the performance of optical communication network. The conclusions showed that there are two types of compensation, digital and optical. Optical compensation has better advantages than digital compensation in terms of efficient improving system performance and increasing data rate against nonlinear effects, especially for advanced systems with high capacity.
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