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Highly Dispersive Photonic Crystal Fibers for Optical True Time Delay (TTD) Based X-Band Phased Array Antenna.

机译:高分散性光子晶体光纤,用于基于光学真时延(TTD)的X波段相控阵天线。

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摘要

Phased array antenna (PAA) is a key component in many of the modern military and commercial radar and communication systems requiring highly directional beams with narrow beam widths. One of the advantages that this technology offers is a physical movement-free beam steering. Radar and communication technologies also require the PAA systems to be compact, light weight, demonstrate high bandwidth and electromagnetic interference (EMI) free performance. Conventional electrical phase shifters are inherently narrowband. This calls for technologies that have a larger bandwidth and high immunity to electromagnetic interference. Optical true-time-delay (TTD) technique is an emerging technology that is capable of providing these features along with the ability to provide frequency independent beam steering. Photonic crystal fiber (PCF) based optical TTD lines are capable of providing precise and continuous time delays required for PAA systems.;Photonic crystal fibers are a new class of optical fibers with a periodic arrangement of air-holes around a core that can be designed to provide extraordinary optical characteristics which are unrealizable using conventional optical fibers. In this dissertation, highly dispersive photonic crystal fiber structures based on index-guidance and bandgapguidance were designed. Designs exhibiting dispersion coefficients as large as - 9500ps/nm/km and 4000ps/nm/km at 1550nm were presented. A TTD module utilizing a fabricated highly dispersive PCF with a dispersion coefficient of -600ps/nm/km at 1550nm was formed and characterized. The module consisted of 4 delay lines employing highly dispersive PCFs connected with various lengths of non-zero dispersion shifted fibers. By employing PCFs with enhanced dispersion coefficients, the TTD module size can be proportionally reduced. A 4-element linear X-band PAA system using the PCF-TTD module was formed and characterized to provide continuous time delays to steer radiofrequency (RF) beams from -41 degrees to 46 degrees by tuning the wavelength from 1530nm to 1560nm.;Using the PCF-TTD based X-Band PAA system, single and simultaneous multiple beam transmission and reception capabilities were demonstrated. Noise and distortion performance characteristics of the entire PAA system were also evaluated and device control parameters were optimized to provide maximum spurious-free-dynamic range. In order to alleviate computational and weight requirements of practical large PAA systems, a sparse array instead of a standard array needs to be used. X-Band sparse array systems using PCF and dispersive fiber TTD technique were formed and RF beam steering was demonstrated. As an important achievement during the research work, the design and fabricated structure of a PCF currently reported to have the highest dispersion coefficient of -5400ps/nm/km at 1549nm, along with its limitations was also presented. Finally, other interesting applications of highly dispersive PCFs in the areas of pulse compression and soliton propagation were explored.
机译:相控阵天线(PAA)是许多现代军用和商用雷达和通信系统中的关键组件,这些系统需要具有窄波束宽度的高定向波束。该技术提供的优点之一是无移动的物理光束转向。雷达和通信技术还要求PAA系统紧凑,重量轻,具有高带宽和无电磁干扰(EMI)的性能。常规的电移相器本质上是窄带的。这要求具有更大带宽和高度抗电磁干扰的技术。光学实时延迟(TTD)技术是一种新兴技术,能够提供这些功能以及提供与频率无关的光束控制能力。基于光子晶体光纤(PCF)的光学TTD线能够提供PAA系统所需的精确和连续的时间延迟。;光子晶体光纤是一类新型的光纤,其围绕芯的气孔周期性排列,可以设计提供非凡的光学特性,这是使用常规光纤无法实现的。本文设计了基于折射率导引和能带导引的高色散光子晶体光纤结构。提出了在1550nm处表现出高达-9500ps / nm / km和4000ps / nm / km的色散系数的设计。形成并表征了一个TTD模块,该模块使用了在1550nm处具有-600ps / nm / km的色散系数的高分散PCF。该模块由4条延迟线组成,这些延迟线使用高度分散的PCF与不同长度的非零色散位移光纤连接。通过采用色散系数增强的PCF,可以按比例减小TTD模块的尺寸。形成了一个使用PCF-TTD模块的4元素线性X波段PAA系统,其特征是通过将波长从1530nm调整到1560nm,提供连续的时间延迟,以将射频(RF)光束从-41度转向46度。在基于PCF-TTD的X波段PAA系统中,演示了单光束和同时光束的多束发射和接收功能。还评估了整个PAA系统的噪声和失真性能特征,并优化了设备控制参数以提供最大的无杂散动态范围。为了减轻实际的大型PAA系统的计算和重量要求,需要使用稀疏阵列而不是标准阵列。形成了使用PCF和色散光纤TTD技术的X波段稀疏阵列系统,并演示了RF波束控制。作为研究工作中的一项重要成就,还介绍了目前据报道在1549nm处色散系数最高的-5400ps / nm / km的PCF的设计和制造结构及其局限性。最后,探索了高度分散的PCF在脉冲压缩和孤子传播领域中的其他有趣应用。

著录项

  • 作者

    Subbaraman, Harish.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 209 p.
  • 总页数 209
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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