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Adaptive electronic linearization of analog optical links.

机译:模拟光链路的自适应电子线性化。

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摘要

Linearization of optical links is imperative for obtaining the maximum dynamic range in an analog link. This dissertation presents an Electronic Linearization method of adaptively linearizing links that are limited by different sources of nonlinearities. Second order and third order distortions arising at the transmitter end in externally and directly modulated links have been suppressed by Predistortion Linearization to give Spurious Free Dynamic Range improvements of as much as 12 dB. A WDM technique for high sensitivity detection of distortions has been proposed and demonstrated for externally modulated links. Further on, a theoretical study of applying Predistortion to baseband signals for linearizing passband links with the signals upconverted to GHz frequencies has been carried out to show that single sideband modulation has distinct advantages over double sideband modulation. The dissertation then explores the nonlinearities produced at the receiver end due to photodetector saturation in intensity modulated links as well as from coherent detection of phase modulated links. Theoretical models and expressions for the dynamic range have been derived, followed by the experimental demonstration of Postdistortion Linearization of both links. The dynamic range was shown to achieve the RIN noise limit with improvements of more than 5 dB in 3rd order and 16 dB in 2nd order limited dynamic range, respectively for the intensity modulated links. Improvements of 2.4 dB were obtained for the phase modulated links. The principle of baseband linearization for passband signals has been applied to these coherently detected links. In an independent approach towards increasing the capacity of an optical link, an uncoordinated optical multiple access system using novel nonlinear trellis codes was also set up and demonstrated to give Bit Error Rates of less than 10-9 for a system with six users, with all interfering users treated as noise.
机译:为了在模拟链路中获得最大动态范围,必须对光链路进行线性化。本文提出了一种电子线性化方法,用于自适应地线性化受不同非线性源限制的链接。通过预失真线性化抑制了外部和直接调制链路中在发射机端出现的二阶和三阶失真,从而使无杂散动态范围提高了12 dB。已经提出了一种WDM技术,用于失真的高灵敏度检测,并已针对外部调制链路进行了演示。进一步地,已经进行了将预失真应用于基带信号以使通带链路与上变频到GHz频率的信号线性化的理论研究,以表明单边带调制比双边带调制具有明显的优势。然后,本文探讨了由于强度调制链路中光电检测器饱和以及相位调制链路的相干检测而在接收器端产生的非线性。推导了动态范围的理论模型和表达式,然后通过实验证明了两个环节的失真后线性化。对于强度调制链路,动态范围显示达到RIN噪声极限,分别在3阶限制动态范围内提高了5 dB以上,在2阶限制动态范围内提高了16 dB以上。调相链路获得了2.4 dB的改进。通带信号的基带线性化原理已应用于这些相干检测的链路。在增加光链路容量的独立方法中,还建立了一个使用新型非线性网格码的不协调光多路访问系统,并证明对于具有六个用户的系统,所有系统的误码率均小于10-9。干扰用户视为噪音。

著录项

  • 作者

    Basak, Juthika.;

  • 作者单位

    University of California, Los Angeles.;

  • 授予单位 University of California, Los Angeles.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 129 p.
  • 总页数 129
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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