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100G and Beyond Transmission Technologies for Evolving Optical Networks and Relevant Physical-Layer Issues

机译:不断发展的光网络和相关物理层问题的100G及超越传输技术

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摘要

As 100-Gb/s digital coherent systems enter commercial deployment, an effort is underway to uncover the technologies that will enable the next-generation optical fiber communication systems. We envisage that future optical transport will be software-defined, enabling flexible allocation of bandwidth resources, with dynamically adjustable per-channel data rates based on instantaneous traffic demand and quality-of-service requirements, leading to unprecedented network agility. Software-defined transponders will have the programmability to adopt various modulation formats, coding rates, and the signal bandwidth based on the transmission distance and type of fiber. Digital signal processing will become increasingly ubiquitous and sophisticated, capable of compensating all types of channel impairments, enabling advanced forward error correction coding, and performing functions previously handled poorly by optical analog hardware such as spectrum shaping and demultiplexing of optical channels.
机译:随着100 Gb / s数字相干系统进入商业部署,正在努力探索将使下一代光纤通信系统成为可能的技术。我们设想,未来的光传输将由软件定义,从而实现带宽资源的灵活分配,并根据瞬时流量需求和服务质量需求动态调整每通道数据速率,从而实现前所未有的网络敏捷性。软件定义的应答器将具有可编程性,可以​​根据传输距离和光纤类型采用各种调制格式,编码率和信号带宽。数字信号处理将变得越来越普遍和复杂,能够补偿所有类型的信道损伤,实现高级前向纠错编码,并执行以前由光学模拟硬件处理不佳的功能,例如光谱整形和光信道解复用。

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    《Proceedings of the IEEE》 |2012年第5期|p.1065-1078|共14页
  • 作者

    Ip E.;

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