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Measurement and control of the state of polarization of light in optical fibers.

机译:光纤中光的偏振状态的测量和控制。

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摘要

High speed fiber optic networks running at or more than 10 Giga-bit per second need polarization compensation system to overcome the impairment caused by the birefringence effect in the single mode fibers. This dissertation studies polarimeter, polarization controller and polarization compensation algorithms that are three key components of the polarization compensation system.; The dissertation propose a novel polarimeter design that is based on Brewster law. The polarimeter has characteristics of in-line, real-time and preserving state of polarization. It can be easily calibrated by the procedure discussed in the dissertation. A prototype polarimeter system is designed and constructed which has been used in a experimental polarization compensation system successfully.; The detailed theoretical analysis of the effects of fiber squeezer based polarization controller in single and cascaded configurations is carried out in the dissertation. A novel idea of single position multiple squeezer polarization controller is proposed, which can provide continuous, endless and reset-free control of the polarization in the single mode fibers. The controller transforms the polarization state in the fiber by controlling the eccentricity and orientation of the fiber. Formulas are given to drive the individual squeezers.; In the dissertation we propose and develop a polarization compensation system that is capable of transforming and locking any polarization state into a circular polarization. The system monitors the two Stokes parameter s1 and s2 and uses PID based closed-loop feedback control algorithm to bring and maintain s1 = 0 and s2 = 0. The design makes it possible to develop low cost polarization compensators using simple electronic circuits. The polarization compensator based on this design can find potential applications in compensating polarization dependent loss or gain of fiber optic components and pre compensation module of the polarization mode dispersion compensation.
机译:<?Pub Inc>以每秒10吉比特或更高的速度运行的高速光纤网络需要偏振补偿系统,以克服单模光纤中由双折射效应引起的损害。本文研究了偏振计,偏振控制器和偏振补偿算法,它们是偏振补偿系统的三个关键组成部分。本文提出了一种基于布鲁斯特定律的新型偏振计设计。旋光仪具有在线,实时和保持偏振状态的特性。可以通过本文讨论的过程轻松地进行校准。设计并构建了原型偏振计系统,该系统已成功用于实验偏振补偿系统。本文对光纤挤压机偏振控制器在单级和级联配置中的效果进行了详细的理论分析。提出了一种单位置多挤压机偏振控制器的新颖思想,该控制器可以对单模光纤中的偏振提供连续,无止境和无复位的控制。控制器通过控制光纤的偏心率和方向来改变光纤中的偏振状态。给出了驱动单个压榨器的公式。在本文中,我们提出并开发了一种极化补偿系统,该系统能够将任何极化状态转换并锁定为圆极化。系统监视两个Stokes参数s 1 和s 2 ,并使用基于PID的闭环反馈控制算法来保持s 1 = 0和s 2 =0。该设计可以使用简单的电子电路开发低成本的偏振补偿器。基于这种设计的偏振补偿器可以在补偿光纤相关的偏振相关损耗或增益以及偏振模色散补偿的预补偿模块方面找到潜在的应用。

著录项

  • 作者

    Lu, Yuesheng.;

  • 作者单位

    Wayne State University.;

  • 授予单位 Wayne State University.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 86 p.
  • 总页数 86
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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