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首页> 外文期刊>Journal of Lightwave Technology >Volterra-Assisted Optical Phase Conjugation: A Hybrid Optical-Digital Scheme for Fiber Nonlinearity Compensation
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Volterra-Assisted Optical Phase Conjugation: A Hybrid Optical-Digital Scheme for Fiber Nonlinearity Compensation

机译:Volterra辅助的光学相位共轭:光纤非线性补偿的混合光学数字方案

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摘要

Digital nonlinearity compensation (NLC) schemes such as digital backpropagation and Volterra equalization are well known to be effective techniques in mitigating optical fiber nonlinearity, thus offering improved transmission performance. Alternatively, optical NLC, and specifically optical phase conjugation (OPC), has been proposed to relax the digital signal processing complexity. In this paper, a novel hybrid optical-digital NLC scheme combining OPC and a Volterra equalizer is proposed, termed Volterra-Assisted OPC (VAO). It has a twofold advantage: it overcomes the OPC limitation in asymmetric links and substantially enhances the performance of Volterra equalizers. When NLC is operated over the entire transmitted optical bandwidth, the proposed scheme is shown to outperform both OPC and Volterra equalization alone by up to 4.2 dB in a five-channel, 32 GBaud PM-16QAM transmission over a 1000 km EDFA-amplified fiber link. Moreover, VAO is also demonstrated to be very robust when applied to long-transmission distances, with a 2.5-dB gain over OPC-only systems at 3000 km. VAO combines the advantages of both optical and digital NLC offering a promising tradeoff between performance and complexity for future high-speed optical communication systems.
机译:众所周知,诸如数字反向传播和Volterra均衡之类的数字非线性补偿(NLC)方案是缓解光纤非线性的有效技术,从而提供了改进的传输性能。可选地,已经提出了光学NLC,特别是光学相位共轭(OPC),以减轻数字信号处理的复杂性。在本文中,提出了一种新的混合光学数字NLC方案,将OPC和Volterra均衡器相结合,称为Volterra-Assisted OPC(VAO)。它具有双重优势:它克服了非对称链路中的OPC限制,并大大增强了Volterra均衡器的性能。当在整个传输光带宽上运行NLC时,在通过1000 km EDFA放大的光纤链路进行的五通道,32 GBaud PM-16QAM传输中,建议的方案在单独的OPC和Volterra均衡上均表现高达4.2 dB。 。此外,当应用于长距离传输时,VAO还被证明非常健壮,在3000 km处仅OPC的系统具有2.5 dB的增益。 VAO结合了光学和数字NLC的优势,为未来的高速光通信系统提供了性能与复杂性之间的有希望的权衡。

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