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Upgrade of optical WDM Transport Systems introducing linerates at 40 Gbit/s per Channel

机译:升级WDM光学WDM传输系统,以每通道40 Gbit / s的速度引入线性有孔板

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Driven by high growth rates of internet traffic the question of upgrading existing optical metro-, regio- and long haul transport networks introducing 40 Gbit/s/λ is one of the most important questions today and in the near future. Current WDM Systems in photonic networks are commonly operated at linerates of 2.5 and 10 Gbit/s/λ. Induced by market analyses and the historical development of transport systems some work has already been carried out to evaluate update scenarios from 10 to 40 Gbit/s channel data rates. Due to the inherent quadruplication of the bandwidth per channel, limitations due to linear and non-linear transmission impairments become stronger resulting in a highly increased complexity of link engineering, potentially increasing the capital and operational expenditures. A lot of work is therefore in progress, which targets at the relaxation of constraints for 40 Gbit/s transmission to find the most efficient upgrade strategies. One approach towards an increased robustness against signal distortions is the introduction of more advanced modulation formats. Different modulation schemes show strongly different optical WDM transmission characteristics. The choice of the appropriate format does not only depend on the technical requirements, but also on economical considerations as an increased transmitter- and receiver-complexity will drive the transponder price. This article presents investigations on different modulation formats for the upgrade of existing metro-/ regio and long haul transport networks. Tolerances and robustness against the main degrading effects dispersion, noise and nonlinearities are considered together with mitigation strategies like the adaptation of dispersion maps. Results from numerical simulations are provided for some of the most promising modulation formats like NRZ, RZ, CS-RZ, Optical Duobinary and DPSK.
机译:在互联网流量的高增长驱动下,升级现有的光学城域,区域和长途传输网络以引入40 Gbit / s /λ的问题是当今和不久的将来最重要的问题之一。当前光子网络中的WDM系统通常以2.5和10 Gbit / s /λ的线性速率工作。由于市场分析和传输系统的历史发展,已经进行了一些工作来评估10到40 Gbit / s通道数据速率的更新方案。由于每通道带宽固有的四倍,由于线性和非线性传输损伤而导致的限制变得更强,导致链路工程的复杂性大大增加,从而可能增加资本和运营支出。因此,正在进行大量工作,其目标是放宽对40 Gbit / s传输的限制,以找到最有效的升级策略。增强抗信号失真鲁棒性的一种方法是引入更高级的调制格式。不同的调制方案显示出大大不同的光学WDM传输特性。适当格式的选择不仅取决于技术要求,而且还取决于经济考虑,因为增加的发送器和接收器复杂性将驱动发送应答器的价格。本文介绍了有关不同调制格式的研究,以升级现有的城域/区域和长途运输网络。针对主要降级效果色散,噪声和非线性的公差和鲁棒性与减色策略(如色散图的适应)一起考虑。数值模拟的结果提供了一些最有前途的调制格式,例如NRZ,RZ,CS-RZ,Optical Duobinary和DPSK。

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