首页> 外文期刊>Journal of Lightwave Technology >Demonstration of 100-Gb/s/λ-Based Coherent WDM-PON System Using New AGC EDFA Based Upstream Preamplifier and Optically Superimposed AMCC Function
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Demonstration of 100-Gb/s/λ-Based Coherent WDM-PON System Using New AGC EDFA Based Upstream Preamplifier and Optically Superimposed AMCC Function

机译:使用新的基于AGC EDFA的上游前置放大器和光学叠加AMCC功能演示基于100 Gb / s /λ的相干WDM-PON系统

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摘要

In this paper, we present the first 100-Gb/s/λ-based coherent wavelength division multiplexing passive optical network (WDM-PON) prototype system, highlighting a real-time 100-Gb/s coherent transceiver with a simplified digital signal processing suitable for access spans, and a new automatic-gain-controlled erbium-doped fiber amplifier based preamplifier with an amplified spontaneous emission compensation function for the upstream to improve the minimum receiver sensitivity for coherent detection, especially at very low received signal power. Thanks to our proposed technologies, this first demonstration achieved an increased bidirectional loss budget of more than 39.1 dB, which supports 80 km transmission with eight optical network unit splits, with an improved upstream receiver sensitivity of –38.1 dBm. In addition, to show the feasibility of the proposed 100-Gb/s/ λ-based coherent WDM-PON as a promising candidate for forthcoming 5G mobile fronthaul networks, we further investigate experimentally a 128-kb/s auxiliary management and control channel (AMCC) superimposed on the 100-Gb/s dual polarization quadrature phase-shift keying (DP-QPSK) signals employed by the 100-Gb/s/λ -based coherent WDM-PON system. By setting the modulation index of the AMCC signals between 5% and 40%, we also successfully demonstrated 100-Gb/s DP-QPSK signal transmission with only a small power penalty of 0.2 dB due to the introduction of the AMCC signal.
机译:在本文中,我们介绍了第一个基于100 Gb / s /λ的相干波分复用无源光网络(WDM-PON)原型系统,重点介绍了具有简化数字信号处理的实时100 Gb / s相干收发器一种适用于接入范围的新型新型基于增益控制的掺fiber光纤放大器的前置放大器,其上游具有放大的自发发射补偿功能,以提高用于相干检测的最小接收器灵敏度,尤其是在接收信号功率非常低的情况下。多亏了我们提出的技术,该首次演示使双向损耗预算增加了超过39.1 dB,它通过八个光网络单元分割来支持80 km传输,并且上游接收机灵敏度提高了–38.1 dBm。此外,为了展示提议的基于100 Gb / s /λ的相干WDM-PON作为即将到来的5G移动前传网络的有希望的候选者的可行性,我们进一步通过实验研究了128 kb / s的辅助管理和控制信道( AMCC)叠加在基于100 Gb / s /λ的相干WDM-PON系统采用的100 Gb / s双极化正交相移键控(DP-QPSK)信号上。通过将AMCC信号的调制指数设置在5%和40%之间,我们还成功地演示了100 Gb / s DP-QPSK信号传输,由于引入了AMCC信号,因此功率损耗仅为0.2 dB。

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