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Minimising nonlinear Raman crosstalk in future network overlays on legacy passive optical networks

机译:最小化传统无源光网络上未来网络覆盖中的非线性拉曼串扰

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摘要

There is a desire to overlay future optical access networks onto legacy passive optical networks (PONs) to provide increasingly advanced services by filling empty wavelength bands of legacy gigabit rate PONs. Nonlinear Raman crosstalk from new wavelengths onto legacy RF video services (1550-1560 nm band) and onto the legacy digital downstream at 1490 nm, however, can limit the number and the launch power of new wavelengths. As an example, straightforward physical-layer adjustments at the optical line terminal that increase the number of new, 10 Gbit/s channels launched in the 1575-1580 nm band by a factor of 16 without increasing the Raman penalty on the video signal are illustrated. A physical-layer (RF) filter modifies the on-off-keyed signal feeding each 10 Gbit/s transmitter, suppressing the RF Raman crosstalk on the video signal by 9 dB while incurring a power penalty on each 10 Gbit/s link of <;0.5 (2.0) dB with (without) forward error correction. The previous Raman mitigation work used non-standard line-coding to shape the 10 Gbit/s electrical spectrum. In addition, polarisation-interleaving of new wavelengths lowers the worst-case RF DC crosstalk by ~3 dB in fibres and it limits and stabilises DC crosstalk in low polarisation mode dispersion fibre links.
机译:希望将未来的光接入网络覆盖到传统的无源光网络(PON)上,以通过填充传统的千兆位速率PON的空波段来提供越来越先进的服务。从新波长到传统RF视频服务(1550-1560 nm波段)和1490 nm下游的数字下游的非线性拉曼串扰会限制新波长的数量和发射功率。作为示例,说明了在光线路终端进行的直接物理层调整,该调整将在1575-1580 nm频带中发射的新的10 Gbit / s通道的数量增加了16倍,而没有增加视频信号的拉曼损失。 。物理层(RF)滤波器修改了馈入每个10 Gbit / s发射机的开关键信号,从而将视频信号上的RF拉曼串扰抑制了9 dB,同时在每个10 Gbit / s链路上产生了< ; 0.5(2.0)dB(无(无)前向纠错)。先前的拉曼缓解措施使用非标准线路编码来形成10 Gbit / s的电频谱。此外,新波长的偏振交织可将光纤中最坏情况下的RF DC串扰降低约3 dB,并限制并稳定低偏振模色散光纤链路中的DC串扰。

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  • 来源
    《Electronics Letters》 |2014年第9期|687-688|共2页
  • 作者

    Piehler D.;

  • 作者单位

    NeoPhotonics, San Jose, CA, USA|c|;

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  • 正文语种 eng
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