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Dual-band beam scanning reflectarrays and novel wideband and polarization diversified planar antennas.

机译:双波段波束扫描反射阵列以及新颖的宽带和极化多样化平面天线。

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摘要

The reflectarray antenna has been considered as a suitable candidate to replace the traditional parabolic reflectors because of its high-gain and low-profile features. Beam scanning capability and multi-band operation are the current trends of the reflectarray design. It is desired to implement these functionalities with simple and effective techniques. Narrow bandwidth is the main issue which restricts the applications of the microstrip antennas. New microstrip slot antennas and polarization diversified planar antennas are introduced as the solutions to the issue of narrow bandwidth in this dissertation.;A dual-band beam scanning reflectarray has been developed. It is the first offset-fed reflectarray that has been ever practically developed to emulate a cylindrical/parabolic type of reflector. Unlike other beam scanning reflectarrays which integrate phase tuning devices into the reflectarray elements and control the reflection phase, the beam scanning capability of this reflectarray is provided by its feed array. This method significantly reduces the complexity of the design of the beam scanning reflectarray. A new dual-band reflectarray configuration is also developed to eliminate the possible top layer blocking effects in the dual-layer reflectarray configuration. Perforated patches loaded with slots on the ground plane and rectangular patches loaded with slots on the patches are adopted as the low and high frequency bands, respectively. It is guaranteed that no physical contact between any two elements will occur.;The bandwidth of the conventional microstrip antenna is small. A new wideband circularly polarized microstrip slot antenna is introduced in this dissertation. Very wide 3-dB axial ratio bandwidth is observed for the proposed antenna. The antennas are assembled in triangularly arranged array with sequential rotation feed technique.;Polarization polarity is an alternative solution to the narrow bandwidth. A reconfigurable circularly polarized microstrip antenna is proposed. The antenna has both right-hand and left-hand circular polarizations which are controlled by two piezoelectric transducers. In addition, a dual-band dual-linearly-polarized planar array is designed based on the concepts of polarization diversity and multi-band operation.;The research presented in this dissertation suggests useful techniques for reflectarrays and novel antenna designs. The results should have many applications for the modern wireless communication and radar systems.
机译:反射阵列天线因其高增益和低剖面特性而被认为是替代传统抛物面反射器的合适选择。光束扫描能力和多波段操作是反射阵列设计的当前趋势。期望通过简单有效的技术来实现这些功能。窄带宽是限制微带天线应用的主要问题。作为解决窄带宽问题的解决方案,本文介绍了新型的微带缝隙天线和极化多样化平面天线。这是第一款已被实际开发用于模拟圆柱/抛物线型反射器的偏馈式反射阵列。与将相位调整装置集成到反射阵列元件中并控制反射相位的其他光束扫描反射阵列不同,此反射阵列的光束扫描功能由其馈送阵列提供。这种方法大大降低了光束扫描反射阵列设计的复杂性。还开发了一种新的双波段反射阵列配置,以消除双层反射阵列配置中可能的顶层阻塞效应。低频段和高频段分别采用在地平面上装有缝隙的穿孔贴片和在贴片上装有缝隙的矩形贴片。保证了任何两个元件之间都不会发生物理接触。常规微带天线的带宽很小。本文介绍了一种新型的宽带圆极化微带缝隙天线。对于建议的天线,观察到非常宽的3 dB轴向比率带宽。天线采用顺序旋转馈电技术组装成三角形排列的阵列。极化极性是窄带宽的替代解决方案。提出了一种可重构的圆极化微带天线。天线具有左右圆极化,由两个压电换能器控制。另外,基于极化分集和多频带工作的概念,设计了一种双频带双线性极化平面阵列。本文的研究提出了用于反射阵列和新颖天线设计的有用技术。结果应在现代无线通信和雷达系统中具有许多应用。

著录项

  • 作者

    Hsu, Shih-Hsun.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 125 p.
  • 总页数 125
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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