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Broadband dielectric resonator antennas for WLAN applications .

机译:WLAN应用的宽带介质谐振器天线。

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摘要

Today's communications systems require use of broadband antennas to meet high capacity requirements. Furthermore, some applications require smaller antenna sizes. In this work, a broadband Dielectric Resonator Antenna (DRA) for WLAN applications is presented. The antennas presented are compact in size, have the broadside radiation patterns and high radiation efficiency. The bandwidth of the DRA depends on the dielectric material, its shape, as well as the excitation technique used to feed the antenna.;The half-cylindrical DRA is used to have the TEo13 mode excited. The radiation patterns of the three antennas are similar to that of a magnetic monopole which has the broadside radiation pattern. Parasitic U-shaped slots are used with the three presented antennas to enhance the bandwidth by exciting a dual resonant frequency in the TE01delta mode. These slots have similar radiation characteristics to those of the half cylindrical DRAs so the overall radiation patterns of these antennas are not deteriorated.;For the fabricated antennas, they have broadside radiation characteristics in H and E planes. As for the impedance bandwidth, the half cylindrical ORA has 24% fractional bandwidth. For the half cylindrical ORA backed with a rectangular dielectric resonator, 32% bandwidth is achieved. A bandwidth of 29% is achieved in the case of half volume Elliptical ORA. The gain of the three antennas slightly changes around 5 dBi which is good for the WLAN applications.;The three antennas presented in this thesis are of half cylindrical shape, mounted on ground planes and excited by aperture coupling slot. A parasitic U slot is part of the feeding network for more coupling and bandwidth enhancement. The antennas have good radiation characteristics and operate over a wide band of frequencies. Ansoft HFSS is used for the antenna simulation. CST Microwave studio is also used to compare the accuracy of time domain and frequency domain analysis of the DRAs. The DR material is Rogers RO3010 (TM) with epsilon r = 10.2, and a dielectric loss tangent of 0.0035. The substrate material is Rogers RT/Duroid 5880(TM) with epsilons = 2.2, a loss tangent of 0.0009, and 0.767 mm thickness.
机译:当今的通信系统需要使用宽带天线来满足高容量要求。此外,某些应用需要较小的天线尺寸。在这项工作中,提出了一种用于WLAN应用的宽带介电谐振天线(DRA)。所展示的天线尺寸紧凑,具有宽边辐射图和高辐射效率。 DRA的带宽取决于电介质材料,其形状以及用于馈送天线的激励技术。半圆柱DRA用于激励TEo13模式。三个天线的辐射方向图类似于具有宽边辐射方向图的磁性单极天线的辐射方向图。寄生的U形缝隙与三个天线一起使用,通过在TE01delta模式下激发双共振频率来提高带宽。这些缝隙具有与半圆柱形DRA相似的辐射特性,因此这些天线的总体辐射方向图不会劣化。对于制造的天线,它们在H和E平面中具有宽边辐射特性。至于阻抗带宽,半圆柱形ORA具有24%的分数带宽。对于带有矩形介质谐振器的半圆柱形ORA,可实现32%的带宽。在半体积椭圆ORA的情况下,可实现29%的带宽。三个天线的增益在5 dBi附近略有变化,这对于WLAN应用是有利的。本文中介绍的三个天线是半圆柱形,安装在地平面上并由孔径耦合槽激励。寄生U槽是馈电网络的一部分,用于更多耦合和带宽增强。天线具有良好的辐射特性,并在很宽的频率范围内工作。 Ansoft HFSS用于天线仿真。 CST Microwave Studio还用于比较DRA的时域和频域分析的准确性。 DR材料是ε= 10.2的Rogers RO3010(TM),介电损耗角正切为0.0035。基底材料是ε= 2.2,损耗角正切为0.0009,厚度为0.767mm的Rogers RT / Duroid 5880 TM。

著录项

  • 作者

    Abumazwed, Ahmed.;

  • 作者单位

    Concordia University (Canada).;

  • 授予单位 Concordia University (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.Sc.
  • 年度 2009
  • 页码 108 p.
  • 总页数 108
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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