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Design methodology for wideband electrically small antennas (ESA) based on the theory of characteristic modes (CM).

机译:基于特征模式(CM)理论的宽带电小型天线(ESA)的设计方法。

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摘要

Emerging broadband applications with market pressures for miniaturized communication devices have encouraged the use of electrically small antennas (ESA) and highly integrated RF circuitry for high volume low cost mobile devices. This research work focuses on developing a novel scheme to design wideband electrical small antennas that incorporates active and passive loading as well as passive matching networks. Several antennas designed using the proposed design technique and built and measured to assess their performance and to validate the design methodology.;Previously, the theory of Characteristic Modes (CM) has been used mostly for antennas analysis. However; in this chapter a design procedure is proposed for designing wide band (both the input impedance bandwidth and the far field pattern bandwidth) electrically small to mid size antennas using the CM in conjunction with the theory of matching networks developed by Carlin [7].;In order to increase the antenna gain, the antenna input impedance mismatch loss needs to be minimized by carefully exciting the antenna either at one port or at multiple ports and/or load the antenna at different ports along the antenna body such that the Q factor in the desired frequency range is suitable for wideband matching network design. The excitation (feeding structure), the loading of the antenna and/or even small modifications to the antenna structure can be modeled and understood by studying the eigenvalues and their corresponding eigencurrents obtained from the CM of the antenna structure.;A brief discussion of the theory of Characteristic Modes (CM) will be presented and reviewed before the proposed design scheme is introduced. The design method will be used to demonstrate CM applications to widen the frequency bandwidth of the input impedance of an electrically small Vee shape Antenna and to obtain vertically polarized Omni-directional patterns for such antenna over a wide bandwidth. A loading technique based on the CM to either design frequency reconfigurable antennas or broaden their bandwidth by Non-Foster loading will also be discussed as part of the design methodology.;In the Appendix, a brief discussion of the fundamental limits of electrical small antennas is presented and then followed by a discussion of the fundamental limits of the impedance bandwidth of the ESA when a passive matching network is used. Matching network implemented using Non-Foster matching is also discussed in the appendix.
机译:小型宽带通信设备的市场压力不断涌现的新兴宽带应用鼓励将电子小天线(ESA)和高度集成的RF电路用于大批量低成本移动设备。这项研究工作着重于开发一种新颖的方案来设计宽带电小型天线,该方案将有源和无源负载以及无源匹配网络结合在一起。使用建议的设计技术设计了几条天线,并对其进行了构建和测量,以评估其性能并验证设计方法。以前,特征模式理论(CM)大部分用于天线分析。然而;在本章中,提出了一种设计程序,用于结合CM和Carlin [7]开发的匹配网络理论来设计宽带(输入阻抗带宽和远场方向图带宽)的电中小型天线。为了增加天线增益,需要通过在一个端口或多个端口处仔细激励天线和/或将天线加载到沿天线主体的不同端口处来最小化天线输入阻抗失配损耗,以使Q因子为所需的频率范围适合宽带匹配网络设计。通过研究从天线结构的CM获得的特征值及其对应的本征电流,可以建模和理解激励(馈电结构),天线的负载和/或对天线结构的微小修改。在提出建议的设计方案之前,将介绍并回顾特征模式(CM)的理论。该设计方法将用于演示CM应用,以加宽电子小V形天线的输入阻抗的频率带宽,并在宽带宽上获得此类天线的垂直极化全向方向图。作为设计方法的一部分,还将讨论基于CM的负载技术,以设计频率可重构天线或通过非福斯特负载来扩展其带宽。在附录中,简要讨论了小型电子天线的基本局限性。提出,然后讨论使用无源匹配网络时ESA阻抗带宽的基本限制。附录中还讨论了使用非福斯特匹配实现的匹配网络。

著录项

  • 作者

    Obeidat, Khaled A.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 118 p.
  • 总页数 118
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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