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Electronic dispersion compensation using full optical-field reconstruction in 10Gbit/s OOK based systems

机译:在基于10Gbit / s OOK的系统中使用全光场重建进行电子色散补偿

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摘要

We investigate the design of electronic dispersion compensation (EDC) using full optical-field reconstruction in 10Gbit/s on-off keyed transmission systems limited by optical signal-to-noise ratio (OSNR). By effectively suppressing the impairment due to low- frequency component amplification in phase reconstruction, properly designing the transmission system configuration to combat fiber nonlinearity, and successfully reducing the vulnerability to thermal noise, a 4.8dB OSNR margin can be achieved for 2160km single-mode fiber transmission without any optical dispersion compensation. We also investigate the performance sensitivity of the scheme to various system parameters, and propose a novel method to greatly enhance the tolerance to differential phase misalignment of the asymmetric Mach-Zehnder interferometer. This numerical study provides important design guidelines which will enable full optical-field EDC to become a cost-effective dispersion compensation solution for future transparent optical networks.
机译:我们研究了受光信噪比(OSNR)限制的10Gbit / s开关键控传输系统中使用全光场重建的电子色散补偿(EDC)的设计。通过有效地抑制相位重构中低频分量放大引起的损伤,适当设计传输系统配置以对抗光纤非线性并成功降低对热噪声的脆弱性,可以为2160km单模光纤实现4.8dB的OSNR余量传输时没有任何色散补偿。我们还研究了该方案对各种系统参数的性能敏感性,并提出了一种新方法,可以大大提高对非对称Mach-Zehnder干涉仪的差分相位失准的容忍度。这项数值研究提供了重要的设计指南,这些指南将使全光场EDC成为未来透明光网络的经济有效的色散补偿解决方案。

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