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Digital coding simulation using micro-ring resonator for long distance communication

机译:使用微环谐振器进行长距离通信的数字编码仿真

摘要

Much interest has recently been expressed in communication through optical fibers, in this project we investigate nonlinear behaviors of light known as bifurcation and chaos within a nonlinear silicon micro-ring resonator (MRR). The research is used to controlling MRR behaviors such as chaos applicable in security signal coding systems. The variable parameters affect the bifurcation to be happened in smaller round-trip among total round trip of 20000 or input power. Therefore, rising of the nonlinear refractive indices, coupling coefficients and radius of the MRR leads to descending in input power and round trips wherein the bifurcation occurs. As result, bifurcation or chaos behaviors are seen at lower input power. In addition, the effect of FSR and FHWM on communication link has been observed. Furthermore, in this work, a performance of nonlinear soliton wave which is generated by Micro ring resonator, in order to be coded and used as a carrier to transmit data over a long distance is investigated ,Controlled chaotic signals from the MRR system are used to generate logic codes of “0” and “1”, which are applicable in wireless network communication.
机译:最近,通过光纤进行通信引起了很多兴趣,在这个项目中,我们研究了非线性硅微环谐振器(MRR)中被称为分叉和混沌的光的非线性行为。该研究用于控制MRR行为,例如适用于安全信号编码系统的混沌。可变参数影响在总往返行程20000或输入功率中较小的往返行程中发生的分叉。因此,非线性折射率,耦合系数和MRR半径的增加会导致输入功率的下降以及发生分叉的往返行程。结果,在较低的输入功率下会出现分叉或混乱行为。此外,已经观察到FSR和FHWM对通信链路的影响。此外,在这项工作中,研究了由微环形谐振器产生的非线性孤子波的性能,以便对其进行编码并用作长距离传输数据的载体,并使用了MRR系统的受控混沌信号生成逻辑代码“ 0”和“ 1”,适用于无线网络通信。

著录项

  • 作者

    Ranjbar Masoud;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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