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Spectrally efficient 1.55 Tb/s Nyquist-WDM superchannel with mixed line rate approach using 27.75 Gbaud PM-QPSK and PM-16QAM

机译:使用27.75 Gbaud PM-QPSK和PM-16QAM的混合线速方法实现频谱效率高的1.55 Tb / s Nyquist-WDM超级通道

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摘要

This paper investigates the transmission performance of a 1.55-Tb/s Nyquist-wavelength division multiplexing superchannel along with a mixed line rate approach using 4x111 Gb/s polarization-multiplexed quadrature phase shift keying (PM-QPSK) and 5 x 222 Gb/s polarization-multiplexed quadrature amplitude modulation (PM-16QAM) formats. The system transmission performance with acceptable bit error rate of 4 x 10-3 is analyzed over standard single mode fiber (SSMF), large effective area fiber (LEAF), and pure silica core fiber (PSCF). It is observed that SSMF increases 45% reach over LEAF, whereas PSCF increases 66% to 84% reach over LEAF for 4.5 b/s/Hz spectral efficiency of the system. Also, spectral efficiency x distance product of 24,750 and 10,350 b/s/Hz.km are obtained for PM-QPSK and PM-16QAM, respectively, which is, to the best of our knowledge, better in comparison with the other existing literatures for single core channel investigations.
机译:本文研究了1.55-Tb / s奈奎斯特波分复用超级信道的传输性能,以及使用4x111 Gb / s偏振复用正交相移键控(PM-QPSK)和5 x 222 Gb / s的混合线速方法偏振复用正交幅度调制(PM-16QAM)格式。在标准单模光纤(SSMF),大有效面积光纤(LEAF)和纯硅纤芯光纤(PSCF)上分析了具有4 x 10-3可接受误码率的系统传输性能。可以看出,在系统的4.5 b / s / Hz频谱效率下,SSMF比LEAF的覆盖范围增加45%,而PSCF比LEAF的覆盖范围增加66%至84%。同样,据我们所知,与PM-QPSK和PM-16QAM相比,谱效率x距离乘积分别为24,750和10,350 b / s / Hz.km,这与我们现有的其他文献相比更好。单核心渠道调查。

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