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Equalization of optical nonlinear waveform distortion using SVM-based digital signal processing

机译:基于SVM的数字信号处理的光学非线性波形失真的均衡

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We proposed a novel nonlinear equalization scheme using a support vector machine (SVM) for optical fiber communication systems. The scheme works even when the received symbols are completely distorted on a constellation map. Whereas conventional SVM-based nonlinear equalization is performed on a two-dimensional (2D) in-phase-quadrature (IQ)-plane, our proposed scheme uses the SVM in a higher dimensional signal space after tapped delay lines. By employing the proposed scheme, we can enlarge the separation between the distorted symbols. We investigated the basic performance using simulated optical fiber transmission of 10-GSymbol/s 16QAM signals. The receiver sensitivity was improved by 2 dB at a BER of 10~(-5).
机译:我们提出了一种使用用于光纤通信系统的支持向量机(SVM)的新型非线性均衡方案。 即使在接收所接收的符号在星座图上完全扭曲时,该方案也可以使用。 然而,传统的基于SVM的非线性均衡在二维(2D)同步(IQ)-Plane上执行,而我们所提出的方案在触发延迟线之后使用高尺寸信号空间中的SVM。 通过采用所提出的计划,我们可以扩大扭曲符号之间的分离。 我们使用10-GSYMBOL / S 16QAM信号的模拟光纤传输调查了基本性能。 在10〜(-5)的BER中,接收器敏感度得到2 dB。

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