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Digital Signal Processing Techniques Enabling Multi-Tb/s Superchannel Transmission: An Overview of Recent Advances in DSP-Enabled Superchannels

机译:启用Multi-Tb / s超级通道传输的数字信号处理技术:启用DSP的超级通道的最新进展概述

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Digital signal processing (DSP) combined with coherent detection has played a central role in the recent capacity expansion of optical networks. Optical superchannels aim to increase per-channel interface rates as well as per-fiber capacities of wavelength-?division multiplexed (WDM) systems in a cost-effective manner. Superchannels circumvent the electronic bottleneck via optical parallelism and provide high-per-channel data rates and better spectral utilization, especially in transparent optical mesh networks. This article reviews recent advances in the generation, detection, and transmission of optical superchannels with channel data rates on the order of terabits per second (Tb/s). Enabling DSP techniques such as Nyquist?WDM, orthogonal frequency-division multiplexing (OFDM), software-defined modulation and detection, advanced coding, and joint DSP among the superchannel constituents are presented. Future prospects of DSP techniques for high-capacity superchannel transmission are also discussed.
机译:与相干检测相结合的数字信号处理(DSP)在最近光网络的容量扩展中起了核心作用。光超级通道旨在以经济高效的方式提高波分复用(WDM)系统的每通道接口速率以及每光纤容量。超级通道通过光学并行性规避了电子瓶颈,并提供了高的每通道数据速率和更好的频谱利用率,尤其是在透明的光学网状网络中。本文回顾了光超级信道的生成,检测和传输方面的最新进展,其信道数据速率约为每秒兆兆比特(Tb / s)。提出了诸如Nyquist?WDM,正交频分复用(OFDM),软件定义的调制和检测,高级编码以及超通道组成部分中的联合DSP之类的使能DSP技术。还讨论了用于大容量超通道传输的DSP技术的未来前景。

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    《IEEE Signal Processing Magazine》 |2014年第2期|16-24|共9页
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