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Chaotic optical communications using delayed feedback systems.

机译:使用延迟反馈系统的混沌光通信。

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摘要

Chaotic dynamics produced by optical delay systems have interesting applications in telecommunications. Optical chaos can be used to transmit secretly, in real-time, a message between an emitter and a receiver. The noise-like appearance of chaos is used to conceal the message, and the synchronization of the receiver with the chaotic emitter is used to decode the message. This work focuses on the study of two crucial topics in the field of chaotic optical communications.; The first topic is the synchronization of chaotic external-cavity laser diodes, which are among the most promising chaotic emitters for secure communications. It is shown that, for edge-emitting lasers, two drastically different synchronization regimes are possible. The regimes differ in terms of the delay time in the synchronization and in terms of the robustness of the synchronization with respect to parameter mismatches between the emitter and the receiver. In vertical-cavity surface-emitting lasers, the two linearly-polarized components of the electric field also exhibit isochronous and anticipating synchronization when the coupling between the lasers is isotropic. When the coupling is polarized, the linearly-polarized component that is parallel to the injected polarization tends to synchronize isochronously with the injected optical field, while the other component tends to be suppressed, but it can also be antisynchronized.; The second topic is the analysis of time series produced by optical chaotic emitters subjected to a delayed feedback. First, we verify with experimental data that chaos produced by optical delay systems is highly complex. This high complexity is demonstrated by estimating chaos dimension and entropy from experimental time series and from models of optical delay systems. Second, by analyzing chaotic time series, it is shown that the value of the delay of a single-delay system can always be identified, independently of the type of system used and of its complexity. Unfortunately, an eavesdropper can use this information on the delay value to break the cryptosystem. We propose a new cryptosystem with two delayed feedback loops that increases the difficulty of the delay identification problem.
机译:由光学延迟系统产生的混沌动力学在电信中具有有趣的应用。光学混乱可用于在发射器和接收器之间秘密地实时传输消息。混沌的类似噪声的外观用于隐藏消息,并且接收器与混沌发射器的同步用于解码消息。这项工作的重点是研究混沌光通信领域中的两个关键主题。第一个主题是混沌外腔激光二极管的同步,这是用于安全通信的最有希望的混沌发射器之一。结果表明,对于边缘发射激光器,两种完全不同的同步方式是可能的。在同步方面的延迟时间方面以及在关于发射器和接收器之间的参数失配方面的同步的鲁棒性方面,这些机制是不同的。在垂直腔面发射激光器中,当激光器之间的耦合是各向同性时,电场的两个线性偏振分量也表现出等时同步和预期同步。当耦合被极化时,与注入的偏振平行的线性偏振成分趋于与注入的光场同步,而其他成分趋于被抑制,但是也可以被反同步。第二个主题是对光学混沌发射器受到延迟反馈产生的时间序列进行分析。首先,我们通过实验数据验证光学延迟系统产生的混沌非常复杂。通过从实验时间序列和光学延迟系统模型估计混沌维数和熵,可以证明这种高复杂性。其次,通过分析混沌时间序列,表明可以始终识别单延迟系统的延迟值,而与所用系统的类型及其复杂性无关。不幸的是,窃听者可以在延迟值上使用此信息来破坏密码系统。我们提出了一种具有两个延迟反馈回路的新密码系统,这增加了延迟识别问题的难度。

著录项

  • 作者

    Locquet, Alexandre.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Electronics and Electrical.; Physics Optics.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 238 p.
  • 总页数 238
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;光学;
  • 关键词

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