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All Optical Solution for Free Space Optics Point to Point Links.

机译:自由空间光学的所有光学解决方案点对点链接。

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摘要

Optical network systems are quickly replacing electrical network systems. Optical systems provide better bandwidth, faster data rates, better security to networks, and are less susceptible to noise. Free Space Optics (systems) still rely on numerous electrical systems such as the modulation and demodulation systems to convert optical signals to electrical signals for the transmitting laser. As the concept of the entirely optical network becomes more realizable, the electrical components of the FSO system will become a hindrance to communications.;The focus of this thesis is to eliminate the electrical devices for the FSO point to point links by replacing them with optical devices. The concept is similar to an extended beam connector. However, where an extended beam connector deals with a gap of a few millimeters, my focus looks at distances from 100 meters to one kilometer. The aim is to achieve a detectable signal of 1nW at a distance of 500 meters at a wavelength of 1500-1600nm. This leads to application in building to building links and mobile networks. The research examines the design of the system in terms of generating the wave, the properties of the fiber feeding the wave, and the power necessary to achieve a usable distance. The simulation is executed in Code V by Synopsys, which is an industry standard to analyze optical systems. A usable device with a range of around 500m was achieved with an input power of 1mW. The approximations of the phase function resulted in some aberrations to the profile of the beam, but were not very detrimental to the function of the device. The removal of electrical devices from a FSO point to point link decreased the power used to establish the link and decreased the cost.
机译:光网络系统正在迅速取代电网络系统。光学系统可提供更好的带宽,更快的数据速率,更好的网络安全性,并且不易受到噪声的影响。自由空间光学(系统)仍然依赖于众多电子系统,例如调制和解调系统,以将光信号转换为用于发射激光器的电信号。随着全光网络的概念变得更加可实现,FSO系统的电气组件将成为通信的障碍。本文的重点是通过将FSO点对点链路替换为光纤来消除FSO点对点链路的电气设备。设备。该概念类似于扩展梁连接器。但是,在延伸的光束连接器需要几毫米的间隙的情况下,我的注意力集中在从100米到一公里的距离上。目的是在1500-1600nm的波长下,在500米的距离处实现1nW的可检测信号。这导致在构建链接和移动网络中的应用。该研究从产生波,馈入波的光纤的特性以及达到可用距离所需的功率的角度来检查系统的设计。该仿真由Synopsys在Code V中执行,这是分析光学系统的行业标准。在输入功率为1mW的情况下,可获得约500m范围的可用设备。相位函数的近似会导致光束轮廓出现一些像差,但对设备的功能不是很有害。从FSO点对点链路移除电气设备会降低用于建立链路的功率,并降低成本。

著录项

  • 作者

    Hirayama, Daigo.;

  • 作者单位

    University of Nevada, Reno.;

  • 授予单位 University of Nevada, Reno.;
  • 学科 Engineering General.;Physics Optics.
  • 学位 M.S.
  • 年度 2012
  • 页码 84 p.
  • 总页数 84
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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