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Channel model and optimal core scrambling for multi-core fiber transmission system

机译:多芯光纤传输系统的频道模型和最优核心争抢

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摘要

Space division multiplexing (SDM) is a potential candidate to increase the capacity of the conventional single mode fiber based transmission systems. Several multi-core fiber (MCF) structures have been proposed, each one is impaired by different core dependent loss (CDL) resulting from the fiber structure, crosstalk, splicing in the optical fiber link and inline components. One of the solutions to mitigate the CDL is the core scrambling. In this paper, we introduce three deterministic core scrambling strategies for different MCFs. The strategies show their efficiency to reduce the CDL compared to the random scrambling. Moreover, in order to estimate the CDL level and predict the system performance for any MCF structure, we propose a theoretical channel model depends on the system configuration and the number of core scrambling installed in the transmission link. Lastly, the optimal deterministic core scrambler is obtained for further reduction of the scramblers number.
机译:空间多路复用(SDM)是增加传统单模光纤基于传输系统的容量的潜在候选者。 已经提出了几种多核光纤(MCF)结构,每个磁心结构,串扰在光纤链路和内联组件中拼接产生的不同核心依赖性损失(CD1)受损。 减轻CDL的解决方案之一是核心争先恐后的争斗。 在本文中,我们为不同的MCF推出了三种确定性核心扰策策略。 与随机扰扰相比,策略表明了减少CDL的效率。 此外,为了估计CDL级别并预测任何MCF结构的系统性能,我们提出了理论信道模型取决于系统配置和安装在传输链路中的核心加扰的数量。 最后,获得最佳确定性核心扰扰器以进一步减小扰码器号。

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