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Recent Advances in the Modeling of the Impact of Nonlinear Fiber Propagation Effects on Uncompensated Coherent Transmission Systems

机译:非线性纤维传播效应对未补偿相干传输系统的影响建模的最新进展

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摘要

The last few years have seen a wealth of new nonlinear propagation modeling results appear in the literature, especially regarding coherent systems operating in the absence of optical dispersion compensation. One of the most prolific lines of research, though not the only one, has been that of improvements and upgrades to the Gaussian-noise (GN) model, which have also led to the so-called enhanced GN model, or EGN model. In addition, many specific aspects of nonlinear propagation, including format and symbol-rate dependence of nonlinearity generation, long-correlated nonlinear phase and polarization noise, the effect of copropagating amplified spontaneous emission noise and distributed amplification, and still others, have been focused on and several new related results have been published. This has been a very positive trend but, from the viewpoint of the end users, such as system and network designers, this large body of new knowledge may have been found difficult to sort out. The question of when and whether more sophisticated models are truly needed in any given system/network scenario, for a given set of accuracy and computational complexity constraints, then naturally arises. This paper tries to address this practical issue and provide indications regarding possible effective solution to varied end-users' requirements.
机译:过去几年已经看到了大量的新的非线性传播建模结果出现在文献中,特别是关于在没有光学分散补偿的情况下操作的相干系统。虽然不是唯一的研究,但这一直是唯一一个对高斯噪声(GN)模型的改进和升级,这也导致了所谓的增强型GN模型或EGN模型。另外,非线性传播的许多特定方面,包括非线性生成,长相关的非线性相位和偏振噪声的格式和符号速率依赖性,共同发布的扩增的自发发射噪声和分布式放大以及其他人的效果已经集中在已经发布了几个新的相关结果。这是一个非常积极的趋势,但从最终用户的观点出发,例如系统和网络设计师,这种大量的新知识可能被发现难以解决。对于给定的一组精度和计算复杂性约束,在任何给定的系统/网络场景中,何时以及更复杂模型的何时以及更复杂的模型是真正需要的问题,然后自然地出现。本文试图解决此实际问题,并为可能有效的解决方案提供有效的解决方案来解决这些实际问题。

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    P. Poggiolini; Y. Jiang;

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  • 年度 2017
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