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Phase Shifting Surface (PSS) and Phase and Amplitude Shifting Surface (PASS) for Microwave Applications.

机译:微波应用的相移表面(PSS)和相移幅值表面(PASS)。

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摘要

This thesis describes an electrically thin surface used for electromagnetic applications in the microwave regime. The surface is free-standing and its primary purpose is to modify the phase distribution, or the phase and amplitude distribution of electromagnetic fields propagating through it: it is called phase shifting surface (PSS) in the first case, and phase and amplitude shifting surface (PASS) in the second case. For practical applications, the surface typically comprises three or four layers of metallic patterns spaced by dielectric layers. The patterns of the metallic layers are designed to locally alter the phase (and amplitude in the case of the PASS) of an incoming wave to a prescribed set of desired values for the outgoing wave. The PSS/PASS takes advantage of the reactive coupling by closely spacing of the metallic layers, which results in a larger phase shift range while keeping the structure significantly thin.;The PSS concept is used to design components such as gratings and lens antennas which are presented in this document. The components are designed for an operating frequency of 30 GHz. The PSS phase grating gives high diffraction efficiency, even higher than a dielectric phase grating. Several types of lens antennas are also presented, which show comparable performance to that of a conventional dielectric plano-hyperbolic lens antenna with similar parameters. The PASS concept is used in a beam shaping application in which a flat-topped beam antenna is designed.;This work demonstrates the potential for realising thin, lightweight and low-cost antennas at Ka band, in particular for substituting higher-gain antenna technologies such as conventional dielectric shaped lens antennas.
机译:本论文描述了一种用于电磁领域的微波电磁薄表面。该表面是独立的,其主要目的是修改通过它传播的电磁场的相位分布或相位和幅度分布:在第一种情况下,它称为相移表面(PSS),而相移和幅度变化表面(PASS)在第二种情况下。对于实际应用,表面通常包括由电介质层隔开的三或四层金属图案。金属层的图案设计为将入射波的相位(在PASS情况下为振幅)局部更改为输出波的一组预定的期望值。 PSS / PASS通过金属层之间的紧密间隔来利用电抗耦合,从而在保持结构显着薄型的同时产生更大的相移范围; PSS概念用于设计光栅和透镜天线等组件。在本文档中介绍。这些组件的设计工作频率为30 GHz。 PSS相位光栅具有更高的衍射效率,甚至比介电相位光栅更高。还介绍了几种类型的透镜天线,它们显示出与具有类似参数的常规电介质平面双曲透镜天线相当的性能。 PASS概念用于设计了平顶波束天线的波束成形应用中;这项工作展示了在Ka频段实现薄,轻便和低成本天线的潜力,尤其是替代高增益天线技术的潜力例如传统的电介质成形透镜天线。

著录项

  • 作者

    Gagnon, Nicolas.;

  • 作者单位

    University of Ottawa (Canada).;

  • 授予单位 University of Ottawa (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 247 p.
  • 总页数 247
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:44:39

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