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首页> 外文期刊>Journal of Lightwave Technology >Optical Mitigation of Interchannel Crosstalk for Multiple Spectrally Overlapped 20-GBd QPSK/16-QAM WDM Channels Using Nonlinear Wave Mixing
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Optical Mitigation of Interchannel Crosstalk for Multiple Spectrally Overlapped 20-GBd QPSK/16-QAM WDM Channels Using Nonlinear Wave Mixing

机译:使用非线性混波技术缓解多个频谱重叠的20GBd QPSK / 16-QAM WDM通道的通道间串扰

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摘要

Optical mitigation of interchannel interference (ICI) for multiple spectrally overlapped data channels is experimentally demonstrated without multichannel detection and channel spacing estimation. The ICI mitigation takes place in three stages of periodically poled lithium niobate (PPLN) waveguides. In the first PPLN stage, the conjugate copies of channels are generated. In the second stage, the overlapped signals are coherently multiplexed with different complex taps. In the third stage, the concurrent nonlinear processes and the coherent multiplexing of the signals with their delayed copies compensate the ICI. The bit error rate and the constellation diagrams of wavelength division multiplexed (WDM) channels carrying quadrature phase-shift keying (QPSK) or 16 quadrature amplitude modulation (16-QAM) formats demonstrate the potential capability of the proposed method to reduce the ICI and its possible modulation format transparency. The effect of channel spacing on the performance of the method is also demonstrated. After optical ICI mitigation, a reduction of almost 4 dB is achieved for the value of optical signal-to-noise ratio at BER of 10(-3) for 20-GBd QPSK signals with a channel spacing of 17.5 GHz. The overlapped WDM system of 20-GBd 16-QAM signals with channel spacing of 17.5 GHz is also ICI mitigated and error vector magnitudes are reduced by almost 28%.
机译:在没有多通道检测和通道间隔估计的情况下,通过实验证明了多个光谱重叠数据通道的通道间干扰(ICI)的光学缓解。 ICI缓解在三个阶段的周期性极化铌酸锂(PPLN)波导中进行。在第一个PPLN阶段,将生成通道的共轭副本。在第二阶段,将重叠的信号与不同的复数抽头相干复用。在第三阶段,并发的非线性过程以及信号及其延迟副本的相干复用补偿了ICI。携带正交相移键控(QPSK)或16种正交幅度调制(16-QAM)格式的波分复用(WDM)信道的误码率和星座图说明了该方法降低ICI及其潜在性能可能的调制格式透明度。还演示了通道间距对方法性能的影响。缓解ICI光学问题后,对于20 GBd QPSK信号(信道间隔为17.5 GHz),BER为10(-3)时,光信噪比值几乎降低了4 dB。信道间隔为17.5 GHz的20 GB 16 QAM信号的重叠WDM系统也得到了ICI缓解,误差矢量幅度降低了近28%。

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