光纤监测脉冲的远程过饱和放大

Breno Perlingeiro, Pedro Tovar, F. Calliari, G. Temporão, G. Amaral, J. P. Weid
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引用次数: 0

摘要

光纤构成了现代通信网络底层物理层的一个惊人部分。为了在全球范围内扩展这种网络,长途连接是必要的。在这种情况下,由于沿途散布着信号增强站,在两个偏远地点之间建立连接是唯一可能的。对这种长途线路的监督对其可靠运行至关重要。在多路复用网络中,需要使用高比率分光器将光信号分配给多个用户,这严重降低了每个网络的传输功率。本文介绍了一种用于信号监测的自动信号增强远程站。现场可编程门阵列(FPGA)是远程站的一部分,并授予其自主操作。利用能够达到半导体光放大器(SOA)过饱和放大的拓扑结构,在远程节点中预先补偿了分配器中经历的较高部分的光损耗,从而允许监督范围扩展。实验结果表明,与使用相同光放大器的另一个远程站相比,该远程站的动态范围增加了约0.5 dB。尽管获得的额外增益是一个很小的改进,但所提出的拓扑为可扩展的放大铺平了道路,允许更长的到达。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Remote Over-saturation Amplification of Optical fiber Monitoring Pulses
Optical fibers constitute a staggering portion of the physical layer underlying modern communication networks. To extend the reach of such networks around the globe, long-haul links are necessary. In this context, establishing a connection between two remote locations is only possible due to signal booster stations interspersed along the way. Supervision of such long distance links is of the utmost importance for their reliable operation. For multiplexed networks, high-ratio optical splitters are necessary to distribute the optical signal to multiple users, diminishing severely the transmitted power for each network. In this work, an automated signal boosting remote station for monitoring signals is presented. A Field Programmable Gate Array (FPGA) is part of the remote station and grants its autonomous operation. Making use of a topology capable of reaching over-saturation amplification of semiconductor optical amplifiers (SOA), a higher portion of the optical loss experienced in the splitter is precompensated in the remote node allowing for supervision reach-extension. Approximately 0.5 dB of increased dynamic range is experimentally achieved when comparing the proposed remote station with another one using the same optical amplifier. Even though the obtained extra gain is a minor improvement, the proposed topology paves the way for scalable amplification, allowing for longer reaches.
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