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Analysis, Simulation and Measurements of CBS Antennas Loaded with Non-Uniformly Biased Ferrite Material.

机译:非均匀偏置铁氧体材料加载的CBS天线的分析,仿真和测量。

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摘要

When ferrite materials are used in antenna designs, they introduce some interesting and unique performance characteristics. One of the attractive features, for example, is the ability to reconfigure the center frequency of the antenna. In addition, ferrite materials also introduce a number of challenges in the modeling and simulation of such antennas.;In order for the ferrite material to be useful in an antenna design, it usually is subjected to an external magnetic field. This field induces the internal magnetic field inside the ferrite material. The internal field plays a pivotal role in the radiation characteristics of the antenna. Thus, from the numerical point of view, accurate computation of this field is critical to the overall accuracy of the analysis. Usually the internal field is non-uniform and its computation is often a rather complex and non-trivial task. Therefore, to facilitate the modeling, simplifying assumptions, which introduce some kind of averaging, are often made.;In this study, ferrite-loaded cavity-backed slot antennas are used to demonstrate that averaging procedures can lead to very unsatisfactory results. For instance, it is common practice to assume that the external field is uniform by averaging its distribution. One of the pivotal points in this study is the demonstration that the external magnetic field plays a very significant role and should be included in the modeling without averaging, if the accurate results are to be attained. Results presented in this study clearly support this argument. A procedure which avoids such averaging is presented and verified by comparing simulations with measurements. In contrast to the previous formulations, the modeling methodology developed in this dissertation leads to accurate results which compare very well with measurements for both uniform and non-uniform field distributions. The utility of this methodology is especially evident for the case when the magnetic field is severely non-uniform.
机译:当铁氧体材料用于天线设计时,它们会引入一些有趣且独特的性能特征。例如,吸引人的功能之一是能够重新配置天线的中心频率。此外,铁氧体材料在这种天线的建模和仿真中也带来了许多挑战。;为了使铁氧体材料在天线设计中有用,通常会受到外部磁场的影响。该磁场在铁氧体材料内部感应出内部磁场。内部场在天线的辐射特性中起着关键作用。因此,从数值的角度来看,该字段的准确计算对于分析的整体准确性至关重要。通常,内部字段是不均匀的,并且其计算通常是一个相当复杂且不平凡的任务。因此,为便于建模,通常会进行简化假设,这些假设会引入某种平均方法。在本研究中,使用铁氧体加载的腔背隙缝隙天线来证明平均程序会导致非常不理想的结果。例如,通常的做法是通过平均外部场的分布来假定外部场是均匀的。这项研究的关键点之一是证明了外部磁场起着非常重要的作用,如果要获得准确的结果,则应将其包括在模型中而不进行平均。这项研究提出的结果清楚地支持了这一论点。通过将仿真与测量结果进行比较,提出并验证了避免这种平均的过程。与以前的公式相反,本文开发的建模方法可得出准确的结果,该结果与均匀和非均匀场分布的测量结果非常吻合。当磁场严重不均匀时,这种方法的效用尤其明显。

著录项

  • 作者

    Kononov, Victor.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Electronics and Electrical.;Physics Electricity and Magnetism.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 202 p.
  • 总页数 202
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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