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Influence of four-wave mixing in short- and medium-range 1310 nm dense wavelength division multiplexing systems

机译:四波混频对中短程1310 nm密集波分复用系统的影响

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In this paper, we demonstrate a comprehensive analysis of the impact of four-wave mixing (FWM) on the quality of transmission in short- and medium-range dense wavelength division multiplexing (DWDM) systems in the 1310 nm wavelength domain. The presented analysis proves that, for the system with uniform power per channel assignment, setting proper input channel power can substantially reduce the influence of the FWM effect on bit error rate in low channel spaced short-range systems, despite the position of the DWDM grid around the zero-dispersion wavelength. Simulations and experimental analysis of the possibility of FWM suppression have been provided. The power penalty measurements show that the influence of FWM on system performance may be as low as 0.3 dB with reasonable input power (i.e., -11 dBm per channel), making possible the transmission of data by fiber over distances of 25 km. Finally, we demonstrate that, for channel spacing as low as 120 GHz, error-free transmission in the 1310 nm wavelength domain is possible, despite high efficiency of FWM generation. The results prove that utilization of the 1310 nm wavelength domain in a system with low channel spacing, i.e., with better bandwidth allocation, is an interesting solution for data storage and processing center applications. (C) 2016 Optical Society of America
机译:在本文中,我们演示了对1310 nm波长域中的中短距离密集波分复用(DWDM)系统中四波混频(FWM)对传输质量的影响的综合分析。所提出的分析证明,对于具有每个信道分配均匀功率的系统,尽管DWDM网格的位置适当,但设置适当的输入信道功率仍可以在低信道间隔的短距离系统中充分降低FWM效应对误码率的影响。在零色散波长附近。提供了对FWM抑制的可能性的仿真和实验分析。功率损失测量结果表明,在合理的输入功率(即每通道-11 dBm)下,FWM对系统性能的影响可能低至0.3 dB,从而可以在25 km的距离内通过光纤传输数据。最后,我们证明,尽管FWM生成效率很高,但对于低至120 GHz的信道间隔,仍可以在1310 nm波长域中进行无错误传输。结果证明,在具有低信道间隔(即具有更好的带宽分配)的系统中利用1310nm波长域是数据存储和处理中心应用的有趣解决方案。 (C)2016美国眼镜学会

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