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Correlated Eigenvalues of Multi-Soliton Optical Communications

机译:多孤子光通信的相关特征值

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摘要

There is a fundamental limit on the capacity of fibre optical communication system (Shannon Limit). This limit can be potentially overcome via using Nonlinear Frequency Division Multiplexing. Dealing with noises in these systems is one of the most critical parts in implementing a practical system. In this paper, we discover and characterize the correlations among the NFT channels. It is demonstrated that the correlation is universal (i.e., independent of types of system noises) and can be exploited to maximize transmission throughput. We propose and experimentally confirm a noise model showing that end-to-end noise can be modelled as the accumulation of noise associated with each segment of optical communication which can be dealt with independently. Also, each point noise can be further decomposed into different components, some of which are more significant (and even dominating) than others. Hence, one can further approximate and simplify the noise model by focusing on the significant component.
机译:光纤通信系统的容量有一个基本限制(Shannon限制)。通过使用非线性频分复用可以潜在地克服此限制。这些系统中的噪声处理是实施实际系统中最关键的部分之一。在本文中,我们发现并表征了NFT通道之间的相关性。证明了相关性是通用的(即,与系统噪声的类型无关),并且可以被利用来最大化传输吞吐量。我们提出并通过实验确认了一个噪声模型,该模型表明可以将端到端噪声建模为与光通信各段相关的噪声累积,可以独立处理这些噪声。而且,每个点噪声可以进一步分解为不同的分量,其中一些分量比其他分量更重要(甚至占优势)。因此,通过关注有效分量,可以进一步近似并简化噪声模型。

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