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Ferroelectric liquid crystal device based photonic controllers for microwave antenna arrays.

机译:基于铁电液晶器件的微波天线阵列光子控制器。

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摘要

For the first time, this dissertation proposes, studies, analyzes, and experimentally demonstrates the use of ferroelectric liquid crystal (FLC) technology for wideband phased array control applications. FLC devices are used as polarization switches in photonic delay lines (PDLs) to control and process optical signals that drive the elements of a phased array antenna (PAA).; The use of photonics for PAA control is, at present, a vital area of applied research. This dissertation work concludes with the demonstration of a multichannel 7-bit PDL system for a wideband PAA such as the Navy's advanced Aegis radar system. The unique system issues and problems to be examined and solved in this Ph.D. dissertation include the theoretical analysis and experimental demonstration of different PDL architectures covering a sub-nanosecond to several nanoseconds time delay range. New noise reduction/suppression schemes are proposed, studied and applied to give record level time delay system performance in terms of signal-to-leakage noise ratio, and switching speeds (e.g., 35 microseconds) required for fast radar scan. We show that the external modulation FO link gives more degrees of freedom to the system engineer, and we propose a novel synchronous RF signal calibration time delay control technique to obtain optimum dynamic range performance for our PDL. The use of low loss fibers for remoting of the photonic beamformer, as well as the losses associated with multiple fiber interconnects that limit the maximum number of array channels in the systems are studied. Different fiber optic coupling techniques are investigated for enhanced fiber coupling. Multimode fibers are used, for the first time, at the output plane of the PDL to obtain improved coupling efficiency. We demonstrate a low ∼1.7 dB optical insertion loss/bit, which is very close to the desired insertion loss required for the Navy system. A novel approach for hardware reduction based on wavelength multiplexing is proposed, where the use of a combination of wavelength dependent and wavelength independent optical paths provides the required time delays. Finally, new switching fabric approaches are studied based on polarization selective holograms and their potential use for the implementation of PDLs is discussed.
机译:本文首次提出,研究,分析和实验证明了铁电液晶(FLC)技术在宽带相控阵控制应用中的应用。 FLC设备被用作光子延迟线(PDL)中的偏振开关,以控制和处理驱动相控阵天线(PAA)元件的光信号。目前,将光子用于PAA控制是应用研究的重要领域。本文的工作以对宽带PAA的多通道7位PDL系统进行演示作为结束,例如海军的先进宙斯盾雷达系统。本博士论文要研究和解决的独特系统问题。论文包括不同的PDL体系结构的理论分析和实验演示,这些体系结构涵盖了亚纳秒到几纳秒的时延范围。提出,研究并应用了新的降噪/抑制方案,以在信噪比,快速雷达扫描所需的切换速度(例如35微秒)方面给出记录级时延系统性能。我们证明了外部调制FO链路为系统工程师提供了更多的自由度,并且我们提出了一种新颖的同步RF信号校准时延控制技术来为我们的PDL获得最佳的动态范围性能。研究了将低损耗光纤用于光子束形成器的处理,以及与限制系统中最大阵列通道数量的多个光纤互连相关的损耗。为了增强光纤耦合,研究了不同的光纤耦合技术。多模光纤首次在PDL的输出平面上使用,以提高耦合效率。我们展示了一个低的〜1.7 dB的光插入损耗/位,这非常接近海军系统所需的插入损耗。提出了一种基于波长复用的减少硬件的新方法,其中结合使用波长相关和波长独立的光路可提供所需的时间延迟。最后,研究了基于偏振选择性全息图的新交换结构方法,并讨论了其在实现PDL中的潜在用途。

著录项

  • 作者

    Madamopoulos, Nicholas.;

  • 作者单位

    University of Central Florida.;

  • 授予单位 University of Central Florida.;
  • 学科 Engineering Electronics and Electrical.; Physics Optics.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 320 p.
  • 总页数 320
  • 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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