基于超奈奎斯特镜像混叠的正交频分复用无源光网络
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OFDM Passive Optical Networks Based on Super-Nyquist Image Induced Aliasing
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    摘要:

    结合自相位调制引入负啁啾和超奈奎斯特镜像混叠技术,实现了一个大容量、大功率预算的长距离无源光网络(Long reach passive optical networks,LR-PON)系统。引入镜像混叠后,混叠部分的子载波将引入分集,提出采用分数采样和逐子载波最大比值合并(Maximum ratio combining,MRC)算法来获得分集增益。仿真和实验结果表明通过使用大入纤功率和镜像混叠,可将10 GHz 带宽正交相移键控(Quadrature phase shift keying,QPSK)调制的正交频分复用(Orthogonal frequency-division multiplexing,OFDM)信号传输距离由45 km扩展至超过80 km。本文还使用自适应调制技术实现了速率大于32 Gb/s、功率预算超过32 dB的LR-PON系统。

    Abstract:

    A novel long reach passive optical networks (LR-PON) with high power budget and high capacity is investigated. Based on self-phase modulation (SPM) induced negative chirp and super-Nyquist image induced aliasing, diversity is firstly introduced to the aliased components using the first-order super-Nyquist image. Then fractional sampling and per-subcarrier maximum ratio combining (MRC) are adopted to harvest the diversity gain. Simulation and experimental results show that, using our proposed scheme, the transmission length of a 10 GHz bandwidth QPSK modulated orthogonal frequency-division multiplexing (OFDM) signal can be extended from 45 km to more than 80 km without any forbidden area. It is also shown that with adaptive modulation, the proposed LR-PON system has a data rate of more than 32 Gb/s and a power budget of larger than 32 dB.

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郭昌建郑毅成梁家伟洪学智李榕.基于超奈奎斯特镜像混叠的正交频分复用无源光网络[J].数据采集与处理,2017,32(2):330-336

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  • 在线发布日期: 2017-04-27