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Design of a Class of Antennas Utilizing MEMS, EBG and Septum Polarizers including Near-field Coupling Analysis.

机译:利用MEMS,EBG和隔片偏振器设计一类天线,包括近场耦合分析。

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摘要

Recent developments in mobile communications have led to an increased appearance of short-range communications and high data-rate signal transmission. New technologies provides the need for an accurate near-field coupling analysis and novel antenna designs. An ability to effectively estimate the coupling within the near-field region is required to realize short-range communications. Currently, two common techniques that are applicable to the near-field coupling problem are 1) integral form of coupling formula and 2) generalized Friis formula. These formulas are investigated with an emphasis on straightforward calculation and accuracy for various distances between the two antennas. The coupling formulas are computed for a variety of antennas, and several antenna configurations are evaluated through full-wave simulation and indoor measurement in order to validate these techniques. In addition, this research aims to design multi-functional and high performance antennas based on MEMS (Microelectromechanical Systems) switches, EBG (Electromagnetic Bandgap) structures, and septum polarizers. A MEMS switch is incorporated into a slot loaded patch antenna to attain frequency reconfigurability. The resonant frequency of the patch antenna can be shifted using the MEM switch, which is actuated by the integrated bias networks. Furthermore, a high gain base-station antenna utilizing beam-tilting is designed to maximize gain for tilted beam applications. To realize this base-station antenna, an array of four dipole-EBG elements is constructed to implement a fixed down-tilt main beam with application in base station arrays. An improvement of the operating range with the EBG-dipole array is evaluated using a simple linkbudget analysis. The septum polarizer has been widely used in circularly polarized antenna systems due to its simple and compact design and high quality of circularity. In this research, the sigmoid function is used to smoothen the edge in the septum design, which makes it suitable for HPM systems. The PSO (Particle Swarm Optimization) technique is applied to the septum design to achieve a high performance antenna design. The electric field intensity above the septum is evaluated through the simulation and its properties are compared to simple half-plane scattering phenomena.
机译:移动通信的最新发展已导致短距离通信和高数据速率信号传输的出现越来越多。新技术需要精确的近场耦合分析和新颖的天线设计。实现短距离通信需要有效估计近场区域内耦合的能力。当前,适用于近场耦合问题的两种常用技术是:1)耦合公式的积分形式和2)广义Friis公式。对这些公式进行了研究,重点是针对两个天线之间各种距离的直接计算和准确性。计算了各种天线的耦合公式,并通过全波仿真和室内测量评估了几种天线配置,以验证这些技术。此外,本研究旨在基于MEMS(微机电系统)开关,EBG(电磁带隙)结构和隔膜偏振器设计多功能高性能天线。将MEMS开关集成到缝隙式贴片天线中,以实现频率可重构性。贴片天线的谐振频率可以使用MEM开关进行偏移,该开关由集成偏置网络驱动。此外,利用波束倾斜的高增益基站天线被设计为最大化倾斜波束应用的增益。为了实现该基站天线,构建了四个偶极EBG元件的阵列,以实现固定的向下倾斜主波束,并将其应用于基站阵列。使用简单的链接预算分析可以评估EBG偶极子阵列对工作范围的改善。隔膜偏振器由于其简单紧凑的设计和高质量的圆形度而被广泛用于圆极化天线系统中。在这项研究中,乙状结肠功能用于使隔垫设计中的边缘光滑,这使其适用于HPM系统。 PSO(粒子群优化)技术应用于隔垫设计,以实现高性能天线设计。通过模拟评估隔膜上方的电场强度,并将其性质与简单的半平面散射现象进行比较。

著录项

  • 作者

    Kim, Ilkyu.;

  • 作者单位

    University of California, Los Angeles.;

  • 授予单位 University of California, Los Angeles.;
  • 学科 Engineering Electronics and Electrical.;Physics Electricity and Magnetism.
  • 学位 D.Env.
  • 年度 2012
  • 页码 200 p.
  • 总页数 200
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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