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Terabit Optical Access Networks Based on WDM-OFDMA-PON

机译:基于WDM-OFDMA-PON的太比特光接入网

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Next-generation optical access networks are envisioned to evolve into a converged, high-speed, multiservice platform supporting residential, business, mobile backhaul, and special purpose applications. Moreover, bandwidth demand projections suggest that terabit aggregate capacity may need to be reached in such next-generation passive optical networks (PON). To satisfy these requirements while leveraging the large investments made in existing fiber plants, a wavelength division multiplexed (WDM)-based long-reach PON architecture combined with a multiple access technology that features a passive last-mile split, large per-$lambda$ speeds, and statistical bandwidth multiplexing can be exploited. In this paper, the first terabit PON based on hybrid WDM orthogonal frequency division multiple access (OFDMA) technology is proposed and experimentally verified. To enable high-speed, long-reach transmission with simplified optical network unit (ONU)-side digital signal processing, multiband OFDMA with ONU-side sub-band selectivity is proposed. Design challenges and tradeoffs between analog and digital domain sub-band combining and selection are also discussed. Finally, the experimental setup and results of the first 1.2 Tb/s (1 Tb/s after overhead) symmetric WDM-OFDMA-PON over 90 km straight single-mode fiber and 1:32 passive split, featuring multiband OFDMA, digitally selective ONUs, and a coherent-receiver OLT are presented and analyzed. By supporting up to 800 ONUs with 1.25/10 Gb/s guaranteed/peak rates and exhibiting a record rate-distance product achieved in long-reach PON, the demonstrated architecture may be viewed as promising for future converged terabit optical metro/access.
机译:预计下一代光接入网络将发展成为一个融合的,高速,多服务平台,支持住宅,企业,移动回程和特殊用途的应用。此外,带宽需求预测表明,在这种下一代无源光网络(PON)中可能需要达到TB级的总容量。为了满足这些要求,同时利用在现有光纤工厂中进行的大量投资,基于波分复用(WDM)的长距离PON架构与多路访问技术相结合,该技术具有无源的最后一英里分离,每毫米的大价格。速度和统计带宽复用可以被利用。本文提出了第一个基于混合WDM正交频分多址(OFDMA)技术的太比特PON,并进行了实验验证。为了通过简化的光网络单元(ONU)侧数字信号处理实现高速,长距离传输,提出了具有ONU侧子带选择性的多频带OFDMA。还讨论了模拟域和数字域子带组合与选择之间的设计挑战和折衷方案。最后,在90 km直单模光纤和1:32无源分束上进行的第一个1.2 Tb / s(开销后为1 Tb / s)对称WDM-OFDMA-PON的实验装置和结果,具有多频带OFDMA,数字选择性ONU提出并分析了相干接收器OLT。通过以1.25 / 10 Gb / s的保证/峰值速率支持多达800个ONU并展示出在长距离PON中实现的创纪录的速率-距离乘积,所展示的体系结构可能被视为对未来的融合太比特级光学城域网/接入很有希望。

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