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Temporal Dynamics of Polarization and Polarization Mode Dispersion and Influence on Optical Fiber Systems

机译:偏振和偏振模色散的时间动态及其对光纤系统的影响

摘要

This thesis examines polarization and polarization mode dispersion (PMD) dynamics in optical fibers as well as the evaluation of probability density functions and bit error rates in a realistic wavelength division multiplexed (WDM) optical communication systems.In the first part of the thesis, experimental studies of the dynamics of polarization in a dispersion compensation module (DCM) are performed in which mechanical shocks are imparted to several different DCMs by dropping a steel ball on the outer casing at different locations and from different heights and the resulting rapid polarization fluctuations are measured. We provide a theoretical model that accounts for the dynamic birefringence generated due to the impact. Next, an experimental technique is proposed to detect the location of temporal polarization activity in WDM systems. It is demonstrated theoretically and in simulations that measurement of both the PMD vector and the Stokes parameters at the WDM frequencies enables the detection of the location of such activity. Different linear prediction procedures are applied to the differential group delay of an optical fiber link assumed to obey the hinge model. The hinges are modeled as polarization rotators with fixed rotation axes and sinusoidally varying rotation angles. Three prediction methods are investigated and consequently compared: an autoregressive model (AR) with Kalman filter, a pattern imitation method and a Taylor expansion technique. The effect of measurement noise on the prediction horizon is also investigated for each prediction method.Using a physically reasonable stochastic model for the hinges, we derive analytical expressions for the temporal autocorrelation functions of the state of polarization (SOP) and the PMD vector. The obtained analytical results are compared to simulations. Finally, we apply the multicanonical method to the probability density function of received symbols and the symbol error ratio (SER) in a dual polarization quadrature phase shift keyed (DP-QPSK) WDM system. We simulate five co propagating channels at a symbol rate of 10.7 GBaud/s and account for PMD and nonlinear effects. We evaluate the performance of the system for two different cases: single mode fibers with full dispersion compensation at the end of the link, effective large area fibers (LEAF) with full dispersion compensation at the end of the link.
机译:本文研究了光纤的偏振和偏振模色散(PMD)动力学,以及在实际的波分复用(WDM)光通信系统中概率密度函数和误码率的评估。在论文的第一部分,实验对色散补偿模块(DCM)中的极化动力学进行了研究,其中通过将钢球从不同位置和不同高度落到外壳上,将机械冲击施加到几种不同的DCM,并测量了由此产生的快速极化波动。我们提供了一个理论模型来说明由于撞击而产生的动态双折射。接下来,提出了一种实验技术来检测WDM系统中时间极化活动的位置。从理论上和仿真中证明,在WDM频率下对PMD矢量和Stokes参数的测量都可以检测到此类活动的位置。将不同的线性预测程序应用于假定遵循铰链模型的光纤链路的差分群延迟。铰链被建模为具有固定旋转轴和正弦变化旋转角度的偏振旋转器。研究了三种预测方法并进行了比较:带卡尔曼滤波器的自回归模型(AR),模式模仿方法和泰勒展开技术。还针对每种预测方法研究了测量噪声对预测范围的影响。使用物理上合理的铰链随机模型,我们推导出了偏振态(SOP)和PMD向量的时间自相关函数的解析表达式。将获得的分析结果与模拟进行比较。最后,在双极化正交相移键控(DP-QPSK)WDM系统中,将多规范方法应用于接收符号的概率密度函数和符号误码率(SER)。我们以10.7 GBaud / s的符号速率模拟五个共同传播的信道,并考虑了PMD和非线性效应。我们在两种不同情况下评估系统的性能:在链路末端具有全色散补偿的单模光纤,在链路末端具有全色散补偿的有效大面积光纤(LEAF)。

著录项

  • 作者

    Soliman George;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 en
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