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首页> 外文期刊>Optical Switching and Networking >Digital all-optical Physical-layer Network Coding for 2Gbaud DQPSK signals in mm-wave radio-over-fiber networks
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Digital all-optical Physical-layer Network Coding for 2Gbaud DQPSK signals in mm-wave radio-over-fiber networks

机译:毫米波光纤网络中2 Gbaud DQPSK信号的数字全光物理层网络编码

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摘要

We propose the first digital All-Optical Physical-layer Network Coding (AOPNC) scheme for up to 2Gbaud Differential Quadrature Phase Shift Keyed - Sub-Carrier Modulated (DQPSK-SCM) signals in future Radio-over-Fiber (RoF) networks. The proposed encoding unit employs Delay Interferometers (DIs) for the DQPSK-to-OOK conversion, a first stage of Semiconductor Optical Amplifier-Mach Zehnder Interferometers (SOA-MZIs)as optical OOK-XOR and OOK-NXOR logic gates, and a second stage of SOA-MZIs as phase regenerators of the final four-level phase-formatted encoded signal. The proposed encoding operation is performed on-the-fly at the Central Office (CO) and the resulting packet is broadcasted at the end-users, where the electrical decoding takes place. The proof of concept scheme is demonstrated for 4 Gb/s Non-Return-to-Zero (NRZ) DQPSK-SCM signals modulated on a 60 GHz Sub-Carrier (SC). The encoding and decoding operation are investigated and evaluated, achieving error free operation for both synchronous and asynchronous data.
机译:我们提出了第一个数字全光物理层网络编码(AOPNC)方案,用于未来的光纤无线(RoF)网络中高达2Gbaud差分正交相移键控-子载波调制(DQPSK-SCM)信号。拟议的编码单元使用延迟干涉仪(DI)进行DQPSK到OOK的转换,将第一级半导体光放大器-马赫曾德尔干涉仪(SOA-MZIs)用作光学OOK-XOR和OOK-NXOR逻辑门,阶段的SOA-MZI作为最终四级相位格式化编码信号的相位再生器。提议的编码操作在中央办公室(CO)上即时执行,并且最终的数据包在最终用户进行广播,在此处进行电解码。对在60 GHz子载波(SC)上调制的4 Gb / s零归零(NRZ)DQPSK-SCM信号进行了概念验证。对编码和解码操作进行了研究和评估,从而实现了同步和异步数据的无错误操作。

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