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Advanced Modulation Formats and All-Optical Processing Solutions for Future Fiber-Optic Communication Systems

机译:面向未来光纤通信系统的高级调制格式和全光处理解决方案

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摘要

In this dissertation we present the research findings around two important hot topics of modern and future fiber-optic communication systems: 100 Gbit/s transmission and alloptical processing of received phase-modulated signals. The findings are discussed in the same chronological order they were obtained. Each topic is summarized in two chapters that correspond to one selected journal and one conference publications. The first and second chapters are dedicated to the simulation and numerical analysis of 100 Gbit/s systems. In chapter one, we present a thorough investigation of the best 100 Gbit/s serial modulation format. Seven different modulation formats are considered and are compared in terms of tolerance to dispersion and maximum reach for a 10⁻⁹ bit error rate target. In chapter two, the behavior of chapter one’s best candidate is analyzed in a realistic environment. The influence of the existing lower data rate neighboring channels is discussed in particular. The results of these two chapters were obtained in collaboration with engineers from the Deutsche Telekom Technology Center in Darmstadt, Germany. They served as a theoretical basis for a field trial carried out by this same company. Chapter three and four focus on the use of semiconductor optical amplifiers for all-optical processing applications. Impaired phased-modulated signals are under particular interest in this study. The novelty in this work resides in the counter-propagating configuration that the semiconductor optical amplifier is operated in. In chapter three we give a detailed description of the experimental results. The complete setup is explained and the improvement in Q-factor and bit error rate for the received signal is proven. Furthermore, two novel concepts (Photonic Balancing and Saturated Asymmetric Filtering) that explain the observed improvements are developed and discussed for the first time to the best of our knowledge. Finally, chapter four aims at optimizing numerically the experimental setup for the saturated asymmetric filtering technique. The required detuned filter after the saturated semiconductor optical amplifier is optimized in terms of both off set and bandwidth.
机译:在本文中,我们围绕现代和未来的光纤通信系统的两个重要热点课题提出了研究成果:100 Gbit / s传输和接收到的相位调制信号的全光处理。将按照获得结果的时间顺序讨论这些发现。每个主题分为两章,分别对应于一份选定的期刊和一份会议出版物。第一章和第二章专门介绍100 Gbit / s系统的仿真和数值分析。在第一章中,我们对最佳的100 Gbit / s串行调制格式进行了全面研究。考虑了七种不同的调制格式,并就色散的容限和10位误码率目标的最大范围进行了比较。在第二章中,将在现实的环境中分析第一章的最佳人选的行为。特别讨论了现有较低数据速率的相邻信道的影响。通过与位于德国达姆施塔特的德国电信技术中心的工程师合作,获得了这两章的结果。它们为该公司进行的现场试验提供了理论基础。第三章和第四章重点介绍了将半导体光放大器用于全光处理应用。受损的调相信号在这项研究中特别受到关注。这项工作的新颖之处在于半导体光放大器在其中工作的反向传播配置。在第三章中,我们对实验结果进行了详细描述。说明了完整的设置,并证明了接收信号的Q因子和误码率的改善。此外,据我们所知,这是首次开发和讨论了两个新颖的概念(光子平衡和饱和不对称滤波),它们可以解释观察到的改进。最后,第四章旨在通过数值优化饱和不对称滤波技术的实验装置。饱和半导体光放大器之后所需的失谐滤波器在偏移和带宽方面都得到了优化。

著录项

  • 作者

    Chaouch Hacène Mahieddine;

  • 作者单位
  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 en
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