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Modeling the time-variant channel of a PMD-affected WDM transmission system in respect to the temperature activity of dispersion compensating modules

机译:相对于色散补偿模块的温度活动,对受PMD影响的WDM传输系统的时变信道进行建模

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The most common model used for PMD simulations visualizes the fiber as a concatenation of a large number of birefringent elements. This system's DGD has the same Maxwellian PDF for each frequency. By measurement of certain links it is shown that the PDF of the DGD is not equal for all of the frequency bands. This behavior could be traced back to the fact that fiber links consist of a certain number of stable buried sections, with nearly no PMD changes over weeks and months. These sections are connected by sections exposed to strong temperature variations, acting as polarization rotators. This new model of a fiber link is known as the hinge model. To characterize these hinges, the temperature dependent behavior of several DCM and patch cords commonly used in WDM systems have been investigated. Measurements showed that DCM are the most active hinges. They produce approximately a full rotation in Stokes space when heated 1℃. This rotation is both reproducible and reversible. An novel model of the analyzed DCM has been developed in Matlab, which is able to reproduce the described measured behavior in simulations. The frequency dependency of the DGD's PDF leads from overall systems outage probability to frequency selective outage probability. That means instead of having a system outage at a certain outage probability, outage probabilities are connected to a number of outage channels.
机译:用于PMD模拟的最常见模型将光纤可视化为大量双折射元素的串联。该系统的DGD对于每个频率都有相同的Maxwellian PDF。通过对某些链路的测量,表明DGD的PDF在所有频带上都不相等。此行为可追溯到以下事实:光纤链路由一定数量的稳定的埋藏部分组成,在数周和数月内PMD几乎没有变化。这些部分通过暴露于强烈温度变化的部分连接起来,充当偏振旋转器。光纤链接的这种新模型称为铰链模型。为了表征这些铰链,已经研究了WDM系统中常用的几种DCM和跳线的温度依赖性行为。测量表明,DCM是最活跃的铰链。当加热到1℃时,它们在斯托克斯空间中产生大约一整圈的旋转。这种旋转既可再现又可逆。在Matlab中开发了一种新的被分析DCM模型,该模型能够在仿真中重现所描述的测量行为。 DGD PDF的频率相关性从整个系统中断概率到频率选择性中断概率。这意味着,将中断概率连接到多个中断通道,而不是使系统以一定的中断概率中断。

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