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Applying the data fusion method to evaluation of the performance of two control signals in monitoring polarization mode dispersion effects in fiber optic links

机译:应用数据融合方法评估两个控制信号在监测光纤链路中偏振模色散效应方面的性能

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With increasing distance and bit rate in fiber optic links the effects of polarization mode dispersion (PMD) have been highlighted. Since PMD has a statistical nature, using a control signal that can provide accurate information to dynamically tune a PMD compensator is of great importance. In this paper, we apply the data fusion method with the aim of introducing a method that can be used to evaluate more accurately the performance of control signals before applying them in a PMD compensation system. Firstly, the minimum and average degree of polarization (DOP_min and DOP_ave respectively) as control signals in monitoring differential group delay (DGD) for a system including all-order PMD are calculated. Then, features including the amounts of sensitivity and ambiguity in DGD monitoring are calculated for NRZ data format as DGD to bit time (DGD/T) varies. It is shown that each of the control signals mentioned has both positive and negative features for efficient DGD monitoring. Therefore, in order to evaluate features concurrently and increase reliability, we employ data fusion to fuse features of each control signal, which makes evaluating and predicting the performance of control signals possible, before applying them in a real PMD compensation system. Finally, the reliability of the results obtained from data fusion is tested in a typical PMD compensator.
机译:随着光纤链路中距离和比特率的增加,偏振模色散(PMD)的影响已得到强调。由于PMD具有统计性​​质,因此使用能够提供准确信息以动态调谐PMD补偿器的控制信号非常重要。在本文中,我们应用数据融合方法,目的是介绍一种可以在将其应用于PMD补偿系统之前更准确地评估控制信号性能的方法。首先,计算包括全阶PMD的系统的最小和平均极化度(分别为DOP_min和DOP_ave)作为监控差分群时延(DGD)中的控制信号。然后,随着DGD到位时间(DGD / T)的变化,针对NRZ数据格式计算包括DGD监视中的灵敏度和模糊度在内的特征。结果表明,所提到的每个控制信号都具有正负两个特征,可以有效地监控DGD。因此,为了同时评估特征并提高可靠性,我们采用数据融合来融合每个控制信号的特征,这使得评估和预测控制信号的性能成为可能,然后再将其应用到实际的PMD补偿系统中。最后,在典型的PMD补偿器中测试了从数据融合获得的结果的可靠性。

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