Mode Coupling in Mode Division Multiplexing techniques for futuristic high speed optical networks and exploring optical fiber parameters to control mode coupling

IF 0.6 Q3 ENGINEERING, MULTIDISCIPLINARY
Abid Munir, Amjad Ali, Abdul Latif
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引用次数: 0

Abstract

Fiber optic communications are inevitable to achieve higher data rates of modern telecom networks. After utilization of Wavelength division multiplexing, higher order modulations and polarization multiplexing, mode division multiplexing is a new dimension to achieve higher transmission capacity for optical fiber communication links. Different spatial distributions of optical energy along cross sectional area of optical fiber allows simultaneous transmission of data by considering each mode as an independent channel. During such simultaneous transmissions, possibility of mixing of signals amongst modes causes signal degradations and acts as limiting factor for bandwidth – distance product of the link. This effect of mode coupling has been explored in this article by presenting its mathematical formulations. A simulation has been performed to study the impact of fiber constructional parameters on mode coupling using optical wavelengths used for telecommunication systems. The observations help to develop fibers for reduced mode coupling for particular group of modes and operating wavelengths. This article paves the way forward for study of mode coupling in micro and macro bending conditions for forthcoming research endeavours.
未来高速光网络的模分复用技术中的模式耦合及光纤参数控制模式耦合的探索
光纤通信是现代电信网络实现更高数据传输速率的必然要求。模分复用是继波分复用、高阶调制和极化复用之后,实现光纤通信链路更高传输容量的一个新维度。光能量沿光纤横截面积的不同空间分布,可以将每个模式视为一个独立的通道,从而实现数据的同时传输。在这种同时传输过程中,信号在不同模式之间混合的可能性会导致信号衰减,并成为链路带宽-距离乘积的限制因素。本文通过给出其数学公式来探讨模式耦合的这种影响。利用通信系统中常用的光波长,对光纤结构参数对模式耦合的影响进行了仿真研究。这些观察结果有助于开发用于特定模式组和工作波长的降低模式耦合的光纤。本文为今后微观和宏观弯曲条件下模态耦合的研究奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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40 weeks
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