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Miniaturized antennas for platform-level integration scenarios.

机译:用于平台级集成方案的小型化天线。

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摘要

Efforts to reduce the physical dimension of an antenna have been vigorously studied for many decades. Through the collection of such efforts, the effects of size reduction on the performance of an antenna are fairly well understood matters in present day. The fundamental limitations established by Wheeler and Chu have been referenced as theoretical guidelines for acquiring smaller antenna size at the expense of radiation resistance, antenna Q (bandwidth) and polarization. While performance degradation is inevitable using contemporary materials as a resonant antenna volume decreases, it is still possible to overcome this restriction by taking a different route. Techniques such as facilitation of mutual coupling effects of parasitic elements, utilization of transistors, capacitive and inductive loading methods and artificial materials are now employed to mitigate and curb the inverse relationship between antenna volume and performance.;This dissertation continues the path of designing fully integrated, electrically small antennas in a controlled manner. The contributions of this dissertation include: (a) A method to reduce the dimension of a cavity-backed slot antenna is synthesized. For a simple straight slot antenna, this technique can reduce the overall occupied volume of the modified cavity backing the slot antenna by more than 65% without effecting the high radiation efficiency of the antenna. This facilitates proper fabrication and integration of miniaturized slot antennas on multi-layer substrates. (b) A platform-integrated low-profile antenna with high isolation levels to its environment is reported. Through this approach, complex package-level designs and simulations can be greatly simplified as the antenna exhibits similar behavior when integrated as it does in open-space. The method enables the realization of unidirectional cavity-backed slot antennas with heights less than lambda/100, minimizing surface intrusion or protrusion for platform antenna implementations. (c) An infinitesimal electric dipole radiating vertical polarization with less than lambda/100 height is realized. The theoretical equivalence relation between a short electric dipole and a magnetic loop at resonance is valid under the following preconditions: (1) The existence of uniform in-phase magnetic current, (2) Impedance matching to the low radiation resistance of the magnetic loop. This dissertation is the first to satisfy both requirements to the best of my knowledge.
机译:减小天线的物理尺寸的努力已经进行了数十年的研究。通过收集这些努力,减小尺寸对天线性能的影响是当今相当清楚的问题。惠勒(Wheeler)和朱(Chu)建立的基本限制已被用作获得较小天线尺寸(以辐射电阻,天线Q(带宽)和极化为代价)的理论指南。尽管随着共振天线体积的减小,使用现代材料不可避免地会导致性能下降,但是仍然有可能通过采取不同的途径来克服这一限制。为了减轻和抑制天线体积与性能之间的反比关系,现在采用了促进寄生元件相互耦合效应,利用晶体管,电容和电感负载方法以及人造材料等技术。 ,以可控制的方式使用电子小天线。本文的研究成果包括:(a)提出了一种减小腔隙缝隙天线尺寸的方法。对于简单的直缝隙天线,该技术可以将支持缝隙天线的改进型腔体的总占用空间减少65%以上,而不会影响天线的高辐射效率。这有助于在多层基板上适当地制造和集成小型缝隙天线。 (b)据报告,平台集成的低剖面天线对其环境具有很高的隔离度。通过这种方法,可以大大简化复杂的封装级设计和仿真,因为集成后的天线表现出与开放空间类似的行为。该方法能够实现高度小于lambda / 100的单向空腔后置缝隙天线,从而最大限度地减少了平台天线实现的表面侵入或突出。 (c)实现了辐射垂直极化的最小电偶极子,其高度小于λ/ 100。在谐振时,短电偶极子与磁环之间的理论等价关系在以下前提下有效:(1)存在均匀的同相磁流;(2)阻抗与磁环的低辐射电阻匹配。据我所知,本文是第一个同时满足这两个要求的论文。

著录项

  • 作者

    Hong, Wonbin.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 147 p.
  • 总页数 147
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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