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100 km fiber span in 292 km, 2.38 Tb/s (16 x 160 Gb/s) WDM DQPSK polarization division multiplex transmission experiment without Raman amplification

机译:无拉曼放大的292 km,2.38 Tb / s(16 x 160 Gb / s)WDM DQPSK偏振分复用传输实验中的100 km光纤跨度

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We investigate the performance of 160 Gb/s WDM transmission with up to 100 km long fiber spans. Using differential quadrature phase-shift keying (DQPSK) and polarization division multiplexing (PolDM), a 160 Gb/s capacity per wavelength is realized at 40 Gsymbol/s rate. We demonstrate that in a relatively conventional EDFA-supported transmission line with an average span loss of 22 dB, a total distance of 292 km is reached with only three spans. Even without proper dispersion management and Raman amplification, we still observe clear eye openings for all channels. In this spectrally highly efficient system, we have achieved a bitrate x span distance product of 16 Tb/s km per wavelength which is, to our knowledge, the highest figure reported so far for 160 Gb/s WDM systems.
机译:我们研究了长达100 km的光纤跨度时160 Gb / s WDM传输的性能。使用差分正交相移键控(DQPSK)和偏振分割多路复用(PolDM),可以以40 Gsymbol / s的速率实现每个波长160 Gb / s的容量。我们证明,在相对传统的EDFA支持的传输线中,平均跨度损耗为22 dB,仅三个跨度即可达到292 km的总距离。即使没有适当的色散管理和拉曼放大,我们仍然可以观察到所有通道的清晰眼图。在这种频谱高效的系统中,我们已经实现了每个波长16 Tb / s km的比特率x跨距距离乘积,据我们所知,这是160 Gb / s WDM系统迄今为止报道的最高数字。

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