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Signalling over nonlinear fibre-optic channels by utilizing both solitonic and radiative spectra

机译:利用孤子和辐射光谱在非线性光纤通道上发信号

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Using the inverse scattering method known for solving partial differential equations such as nonlinear Schrödinger equation, we analyse a fibre optic communication system which maps data on both discrete and continuous spectra defined by nonlinear Fourier transform. By signalling over both spectra, the degrees of freedom of the channel can be exploited to potentially increase the achievable data-rate in an attempt to approach the capacity of the optical fiber. Considering such a system, our results demonstrate the signal-dependency of the noise mapped to the nonlinear frequency domain. The temporal broadening factor is also studied for different pulse shapes and pulse sequence lengths modulated over the continuous spectrum. Finally, the error rate performance of the communication system signalling over both discrete and continuous spectra is presented.
机译:使用已知用于解决诸如非线性Schrödinger方程等偏微分方程的逆散射方法,我们分析了一种光纤通信系统,该系统将数据映射到由非线性傅里叶变换定义的离散光谱和连续光谱上。通过在两个频谱上发信号,可以利用信道的自由度来潜在地增加可达到的数据速率,以尝试接近光纤的容量。考虑到这样的系统,我们的结果证明了映射到非线性频域的噪声的信号相关性。还针对在连续频谱上调制的不同脉冲形状和脉冲序列长度研究了时间展宽因子。最后,给出了通信系统在离散频谱和连续频谱上发出信号的误码率性能。

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