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Microwave devices and antennas based on negative-refractive-index transmission-line metamaterials.

机译:基于负折射率传输线超材料的微波设备和天线。

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摘要

Several microwave devices and antennas that are based on negative-refractive-index transmission-line (NRI-TL) metamaterials are presented in this thesis, which exhibit superior performance features compared to their conventional counterparts. These are a Wilkinson balun, a 1:4 series power divider, a four-element printed dipole array, a leaky-wave antenna, and an electrically small folded-monopole antenna. The Wilkinson balun employs +90° and -90° NRI-TL metamaterial lines at the output branches of a Wilkinson divider, to achieve a six-fold increase in the measured differential output phase bandwidth compared to that of an analogous balun employing transmission lines, while occupying only 55% of the area. The 1:4 series power divider comprises four non-radiating 0° NRI-TL metamaterial lines, each with a compact length of lambda0/8, to provide equal power split to all four output ports. Compared to a conventional series power divider employing one-wavelength long transmission lines, the metamaterial divider provides a 154% increase in the measured through-power bandwidth, while occupying only 54% of the area. The metamaterial series power dividing concept is also applied to a four-element fully-printed dipole array that is designed to radiate at broadside, in order to demonstrate that the array exhibits reduced beam squinting characteristics. It is shown that the metamaterial-fed array has a measured scan-angle bandwidth that is 173% greater than an array that is fed using a conventional low-pass loaded line. The reduced-beam squinting property that NRI-TL metamaterial lines offer is subsequently exploited to create a leaky-wave antenna that radiates a near-fixed beam in the forward +45° direction, with an average measured beam squint of only 0.031°/MHz. This is achieved by operating the antenna in the upper right-handed band where the phase and group velocities are the closest to the speed of light. Finally, an electrically small antenna comprising four 0° NRI-TL metamaterial unit cells is presented which supports a predominantly even-mode current, thus enabling it to be modeled as a multi-arm folded monopole. This significantly increases its radiation resistance, which allows it to be matched to 50 O, while maintaining a high measured efficiency of 70%.
机译:本文介绍了几种基于负折射率传输线(NRI-TL)超材料的微波设备和天线,与传统的微波设备和天线相比,它们具有优越的性能。它们是威尔金森(Wilkinson)巴伦,1:4串联功率分配器,四元件印刷偶极子阵列,漏波天线和电小的折叠单极天线。威尔金森不平衡变压器在威尔金森分频器的输出分支处采用+ 90°和-90°NRI-TL超材料线,与采用传输线的类似巴伦相比,所测得的差分输出相位带宽增加了六倍,而仅占该地区的55%。 1:4系列功率分配器包括4条非辐射0°NRI-TL超材料线,每条线的紧凑长度为lambda0 / 8,以为所有四个输出端口提供相等的功率分配。与采用单波长长传输线的常规串联功率分配器相比,超材料分压器可将测得的直通功率带宽提高154%,而仅占其面积的54%。超材料串联功率分配概念也应用于四元素全印刷偶极子阵列,该阵列设计为在宽边辐射,以证明该阵列显示出减小的斜视特性。示出了超材料馈送的阵列具有比使用常规低通负载线馈送的阵列大173%的测量的扫描角带宽。随后利用NRI-TL超材料线提供的减少波束斜视特性,以创建泄漏波天线,该漏波天线向+ 45°正向辐射近固定束,平均测得的斜视斜率仅为0.031°/ MHz 。这可以通过在右上频带中操作天线来实现,在该频带中,相位和群速度最接近光速。最后,提出了一种电小型天线,该天线包含四个0°NRI-TL超材料单元,可支持主要为偶数模式的电流,因此可将其建模为多臂折叠单极子。这显着提高了其辐射抗性,使其可以匹配至50 O,同时保持70%的高测量效率。

著录项

  • 作者

    Antoniades, Marc A.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 283 p.
  • 总页数 283
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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