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80-Gb/s wavelength stacked time and wavelength division multiplexing-passive optical network for the next generation-pon second stage

机译:下一代PON第二级的80 Gb / s波长堆叠时间和波分复用无源光网络

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Nextgeneration access network aims to support high data rate transmission for the end users. In this paper, we demonstrated 80-Gb/s time and wavelength division multiplexing-passive optical network (TWDM-PON) for next-generation second stage PON (NG-PON 2). Eight 10-Gb/s TDM-PON systems are stacked using eight wavelengths in the downstream direction and externally modulated. Tunable optical filter (TOF) is used to select the targeted downstream wavelengths and semiconductor optical amplifier (SOA) deployed in the receiver is used to improve the receiver sensitivity. The 80-Gb/s system is successfully demonstrated by simulation over 50 km fiber transmission, and 1:52 splitting ratio and 38 dB power budget is obtained. Further-more, findings revealed the achievable power variation penalty between the eight wavelengths without dispersion compensation is 2 dB at bit error rate (BER) of 10.
机译:下一代接入网旨在为最终用户支持高数据速率传输。在本文中,我们演示了用于下一代第二级PON(NG-PON 2)的80 Gb / s时分波分复用-无源光网络(TWDM-PON)。八个10-Gb / s TDM-PON系统在下行方向上使用八个波长进行堆叠并进行外部调制。可调光学滤波器(TOF)用于选择目标下游波长,而部署在接收器中的半导体光放大器(SOA)用于提高接收器灵敏度。通过在50 km的光纤传输上进行仿真,成功地演示了80 Gb / s系统,并获得了1:52的分光比和38 dB的功率预算。此外,研究发现,在误码率(BER)为10的情况下,在没有色散补偿的情况下,八个波长之间可实现的功率变化损失为2 dB。

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