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Optical Physical-Layer Digital Network Coding for 2.5-Gb/s RoF-Based FiWi Networks

机译:基于2.5 Gb / s RoF的FiWi网络的光学物理层数字网络编码

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摘要

We demonstrate the first digital optical physical-layer network coding (OPNC) scheme for 2.5-Gb/s ON/OFF keyed (OOK) subcarrier modulated (SCM) signals suitable for the application in fiber-wireless networks. The proposed OPNC scheme employs all optical XOR logic gates that rely on cross-phase modulation-based Semiconductor Optical Amplifier (SOA) Mach–Zehnder interferometers to perform encoding and decoding operations. The proposed encoding and decoding scheme is targeting deployment at the central office and the clients site at the remote antenna units, respectively. Proof of concept verification is experimentally demonstrated for 2.5-Gb/s OOK-SCM data using a 10-GHz subcarrier. Both synchronous and asynchronous operations are evaluated, achieving error free operation.
机译:我们演示了适用于光纤无线网络的第一个用于2.5 Gb / s开/关键控(OOK)子载波调制(SCM)信号的数字光学物理层网络编码(OPNC)方案。提出的OPNC方案采用了所有基于基于交叉相位调制的半导体光放大器(SOA)Mach-Zehnder干涉仪的光学XOR逻辑门,以执行编码和解码操作。拟议的编码和解码方案分别针对部署在中心局和客户端站点的远程天线单元。实验证明了使用10 GHz副载波针对2.5 Gb / s OOK-SCM数据进行的概念验证。同步和异步操作都经过评估,实现了无错误操作。

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