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首页> 外文期刊>Optical Communications and Networking, IEEE/OSA Journal of >Scalable and Spectrally Efficient Long-Reach Optical Access Networks Employing Frequency Interleaved Directly Detected Optical OFDM
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Scalable and Spectrally Efficient Long-Reach Optical Access Networks Employing Frequency Interleaved Directly Detected Optical OFDM

机译:利用频率交织直接检测到的光OFDM的可扩展且频谱高效的远程光接入网

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摘要

Extending the reach of traditional passive optical networks (PONs) to 100 km and increasing the split ratio beyond 1:64 are promising solutions in future optical access networks. These systems can accommodate increased users at longer distances potentially at low cost. With the increasing demand for higher bandwidths, current networks may soon require that bit rates upgrade to 100 Gb/s and beyond. However, the traditional on–off-keyed PON cannot be scaled up to such bit rates, as very high-speed opto-electronic devices are required that are still maturing. Therefore, to provide a comprehensive solution to these scalability issues of existing PONs, we propose a spectrally efficient (4 bit/s/Hz) 100 Gb/s long-reach PON based on 64 quadrature amplitude modulation (QAM) and frequency interleaved directly detected optical orthogonal-frequency-division multiplexing. We show that the proposed system may operate effectively over 100 km of single mode fiber with a 1024-way split and a receiver bandwidth of 25 GHz. It is also shown that the system can be provisioned to support even higher numbers of users (e.g., 2048, 4096, etc.) simply by varying the order of QAM with little compromise in bit rates. Moreover, the effects of various link parameters such as laser linewidths, fiber dispersion, filter profiles, etc. are also investigated for proper link dimensioning.
机译:将传统无源光网络(PON)的覆盖范围扩展到100公里,并将分光比提高到1:64以外,是未来光接入网络中很有希望的解决方案。这些系统可以潜在地以较低的成本在距离较远的地方容纳更多的用户。随着对更高带宽的需求不断增加,当前的网络可能很快会要求比特率升级到100 Gb / s甚至更高。但是,传统的开关键控PON无法扩展到这样的比特率,因为需要非常成熟的超高速光电设备。因此,为了为现有PON的这些可扩展性问题提供全面的解决方案,我们提出了一种基于64个正交幅度调制(QAM)和直接检测频率交织的频谱有效(4 bit / s / Hz)100 Gb / s长距离PON光正交频分复用。我们表明,所提出的系统可以在100公里的单模光纤上有效运行,并具有1024路分离和25 GHz的接收器带宽。还显示出仅通过改变QAM的顺序而几乎不牺牲比特率就可以提供系统以支持甚至更多的用户(例如2048、4096等)。此外,还研究了各种链路参数(例如激光线宽,光纤色散,滤波器轮廓等)的影响,以确定适当的链路尺寸。

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