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Novel Approaches to the Design of Phased Array Antennas.

机译:相控阵天线设计的新颖方法。

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摘要

This dissertation presents three new approaches to the design of phased array antennas in order to reduce their complexity. The first approach is based on extended resonance technique which, unlike conventional phased array designs, achieves power dividing and phase shifting tasks within a single circuit. A new extended resonance circuit is developed here that increases the maximum achievable scan angle by three times compared to the extended resonance phased array demonstrated previously. In order to expand the size of phased array, a new modular approach is used enabling a scalable design of extended resonance phased array for the first time. By applying heterodyne-mixing concept, a modular 24 GHz phased array has been demonstrated.;The second approach presented in this dissertation is based on a bi-directional feeding method. A new phased array is designed based on this approach which demands less phase shift from phase shifters compared to any of common phased arrays. The new bi-directional phased array allows for beam steering using only a single control voltage. A general design procedure for a bidirectional N-element phased array feed network is presented for the first time which allows applying this approach to phased arrays with any number of antenna elements. Furthermore, a new, compact phase shifter is designed and utilized in the phased array. A 2.4 GHz bi-directional phased array has been designed and fabricated.;Finally, the third approach described in the dissertation allows the phase progression across the antenna elements to be controlled by using a single phase shifter. Therefore, the number of phase shifters required in the phased array is substantially reduced compared to conventional phased array designs which require a separate phase shifter per each antenna element. A variable phase shift is achieved in this approach by vector summation of signals. The amplitude ratios of these vectors are adjusted to provide a linear phase progression. This approach is much simpler than the traditional Cartesian phase shifting scheme. A 2 GHz phased array designed based on this approach has been fabricated and tested.
机译:为降低相控阵天线的复杂度,本文提出了三种新的相控阵天线设计方法。第一种方法基于扩展共振技术,与传统的相控阵设计不同,扩展共振技术可在单个电路中实现功率分配和相移任务。这里开发了一种新的扩展谐振电路,与先前演示的扩展谐振相控阵相比,该电路可将最大可达到的扫描角增加了三倍。为了扩展相控阵的尺寸,使用了一种新的模块化方法,从而首次实现了扩展谐振相控阵的可扩展设计。通过应用外差混合的概念,已经证明了模块化的24 GHz相控阵。;本文提出的第二种方法是基于双向馈电方法。基于这种方法设计了一种新的相控阵,与任何常见的相控阵相比,相移器需要的相移更少。新的双向相控阵仅使用一个控制电压即可进行光束控制。首次介绍了双向N元素相控阵馈电网络的一般设计程序,该程序允许将该方法应用于具有任意数量天线元件的相控阵。此外,在相控阵中设计并使用了一种新型的紧凑型移相器。设计并制造了一个2.4 GHz双向相控阵。最后,本文所述的第三种方法允许通过使用单个移相器来控制天线元件上的相位变化。因此,相较于传统的相控阵设计,相控阵中所需的相移器的数量大大减少了,而传统的相控阵设计则需要每个天线元件一个单独的相移器。在这种方法中,通过信号的矢量求和来实现可变相移。调整这些矢量的振幅比以提供线性相位级数。这种方法比传统的笛卡尔相移方案要简单得多。已经制造并测试了基于此方法设计的2 GHz相控阵。

著录项

  • 作者

    Ehyaie, Danial.;

  • 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 2011
  • 页码 137 p.
  • 总页数 137
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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