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Tunable frequency selective surfaces and true-time-delay lenses for high-power-microwave (HPM) applications.

机译:适用于高功率微波(HPM)应用的可调频率选择表面和实时延时透镜。

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摘要

Phased array antennas and agile antenna apertures can potentially play a significant role in the future wireless system, and benefit several strategic areas such as ultra-fast data rate wireless transmission and economically viable solar power transmissions. Despite the conventional use of phased array antennas in many military sectors such as airborne and ground based radar systems, the complexity of the array structures as well as the excessive cost of phase shifters and T/R modules prohibits the phased arrays from being deployed in many strategic and commercial systems. A significant amount of this thesis is dedicated to providing innovative and interdisciplinary solutions that could potentially enable the widespread use of high-power-capable and affordable phased-array technology in the future wireless systems.;In this thesis, the concept of tunable space-fed microwave lens is proposed as a promising approach of realizing affordable agile antenna apertures. Using this approach, the entire system is expected to have wideband operation, a strong capability of handling high RF power levels, and negligible losses with greatly simplified architecture. The proposed planar microwave lenses are composed of numerous true-time-delay (TTD) units, and are extremely suitable in broadband pulsed applications. A linear tuning technique that dose not rely on solid-state devices is also proposed as a potential way of making these lenses tunable.;Each time-delay unit in the proposed microwave lenses is in the form of one unit cell of an appropriately designed frequency selective surfaces (FSSs). In this thesis, the FSSs of choice are composed of multiple impedance sheets separated from each other by thin dielectrics. It is first demonstrated that these FSSs can be made tunable by using a fluidically tuning technique that dose not rely on solid state devices. The resulting tunable FSSs have a wide tuning range and can maintain linearity in high power applications. Subsequently, the power handling capability of these FSSs are studied extensively, and the guidelines of designing extremely high-power capable FSSs are provided. Finally, the design of true-time-delay microwave lenses composed of these FSSs are demonstrated. In particularly, the time-delay units of these lenses can be composed of bandpass, lowpass and all-dielectric type FSSs, depending on the specific application.
机译:相控阵天线和敏捷的天线孔径可能在未来的无线系统中扮演重要角色,并有益于多个战略领域,例如超快数据速率无线传输和经济可行的太阳能传输。尽管在许多军事领域(如机载和基于地面的雷达系统)中常规使用相控阵天线,但由于阵列结构的复杂性以及移相器和T / R模块的过高成本,使得相控阵天线无法部署在许多领域。战略和商业系统。本论文的大部分内容致力于提供创新的跨学科解决方案,这些解决方案有可能在未来的无线系统中广泛使用高功率且价格合理的相控阵技术。馈电微波透镜是实现可承受的敏捷天线孔径的一种有前途的方法。使用这种方法,整个系统可望实现宽带运行,强大的处理高射频功率水平的能力,并通过大大简化的架构来降低损耗。所提出的平面微波透镜由多个实时延迟(TTD)单元组成,非常适合宽带脉冲应用。还提出了一种不依赖于固态器件的线性调谐技术,作为使这些透镜可调谐的一种潜在方法。所提出的微波透镜中的每个时延单位都采用一个具有适当设计频率的单位晶胞的形式选择性表面(FSSs)。在本文中,选择的FSS由多个阻抗片组成,这些阻抗片被薄的电介质彼此隔开。首先证明,通过使用不依赖固态设备的流体调节技术,可以使这些FSS可调。最终的可调FSS具有宽调谐范围,并可以在高功率应用中保持线性。随后,对这些FSS的功率处理能力进行了广泛的研究,并提供了设计功能强大的FSS的指南。最后,演示了由这些FSS组成的实时延时微波透镜的设计。特别地,取决于特定的应用,这些透镜的延时单元可以由带通,低通和全电介质型FSS组成。

著录项

  • 作者

    Li, Meng.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Engineering General.;Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 202 p.
  • 总页数 202
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:04

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