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Extending reach of passive optical networks through optical amplification

机译:通过光放大扩大无源光网络的覆盖范围

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In this paper, the research progress on increasing the reach of passive optical networks (PONs) by means of optical amplification is reported. The work is focused on next generation PON operating at 10 Gb/s with long reach up to 100 km and high split. The studied amplifier is the erbium-doped amplifier operating in the C-band. It is a mature technology largely used in the metro and long-haul network due to its relative flat and broad gain. In order to handle the bursty upstream traffic and overcome the different signal power level due to different distance between several optical network units (ONUs) to optical line terminal (OLT), a gain clamping technique to stabilise the amplifier is investigated. A dual-stage amplifier is used to obtain high gain at large input power excursion. The optically clamped amplifier provides gain over 22 dB up to a total input power of -3 dBm. The gain excursion is less than 1.6 dB for a large input power variation. Overall the experimental results show that the optical feedback loop is a simple and cost effective technique to guarantee amplifier robustness for typical upstream PON traffic.
机译:本文报道了通过光放大来扩大无源光网络(PON)的覆盖范围的研究进展。这项工作专注于以10 Gb / s的速度运行的下一代PON,远距离可达100 km,并具有较高的分割率。研究的放大器是工作在C波段的掺do放大器。由于其相对平坦和广泛的收益,它是一种成熟的技术,广泛用于地铁和长途网络。为了处理突发的上行业务并克服由于几个光网络单元(ONU)与光线路终端(OLT)之间的距离不同而导致的信号功率不同的问题,研究了一种增益钳位技术来稳定放大器。双级放大器用于在较大的输入功率偏移下获得高增益。光学钳位放大器提供的增益超过22 dB,总输入功率为-3 dBm。对于较大的输入功率变化,增益偏移小于1.6 dB。总体而言,实验结果表明,光反馈环路是一种简单且具有成本效益的技术,可确保放大器对典型上游PON流量具有鲁棒性。

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