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Polarization Drift Channel Model for Coherent Fibre-Optic Systems

机译:相干光纤系统的偏振漂移通道模型

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摘要

A theoretical framework is introduced to model the dynamical changes of the state of polarization during transmission in coherent fibre-optic systems. The model generalizes the one-dimensional phase noise random walk to higher dimensions, accounting for random polarization drifts, emulating a random walk on the Poincaré sphere, which has been successfully verified using experimental data. The model is described in the Jones, Stokes and real four-dimensional formalisms, and the mapping between them is derived. Such a model will be increasingly important in simulating and optimizing future systems, where polarization-multiplexed transmission and sophisticated digital signal processing will be natural parts. The proposed polarization drift model is the first of its kind as prior work either models polarization drift as a deterministic process or focuses on polarization-mode dispersion in systems where the state of polarization does not affect the receiver performance. We expect the model to be useful in a wide-range of photonics applications where stochastic polarization fluctuation is an issue.
机译:引入了一个理论框架来模拟相干光纤系统在传输过程中偏振态的动态变化。该模型将一维相位噪声随机游走推广到更高的维度,考虑了随机极化漂移,模拟了庞加莱球体上的随机游走,已使用实验数据成功验证了这一点。该模型在Jones,Stokes和实际的四维形式主义中进行了描述,并得出了它们之间的映射。这种模型在模拟和优化未来系统中将变得越来越重要,在该系统中,偏振复用传输和复杂的数字信号处理将成为自然的部分。所提出的极化漂移模型是同类中的第一个,因为先前的工作要么将极化漂移建模为确定性过程,要么着重于极化状态不影响接收器性能的系统中的极化模式色散。我们希望该模型在随机偏振波动是一个问题的广泛的光子学应用中很有用。

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