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Multi-functional reconfigurable antenna using RF-MEMS switches for communication systems.

机译:使用RF-MEMS开关的多功能可重构天线,用于通信系统。

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摘要

RF-MEMS (Micro-electro-mechanical-system) is an emerging technology that is revolutionizing RF and microwave applications. RF-MEMS switches are basic building blocks for a variety of RF-MEMS circuits. These switches have demonstrated outstanding RF performance with very low insertion loss, and high isolation. In addition they operate at low power with excellent linearity and extremely low signal distortion. Such features make them very attractive for modern communications applications.; The RF-MEMS switches have been integrated for reconfigurable circuits. Using RF-MEMS switches, various RF circuits such as reconfigurable antenna, tunable filters, and phase shifters have been demonstrated with superior performance over conventional semiconductor devices. This re-configurability has highlighted advantages of the RF-MEMS switches. A monolithic fabrication process is proposed to integrate RF-MEMS switches in reconfigurable circuits, directly on printed circuit boards (PCBs). It is essential to develop a manufacturability of RF-MEMS switch on a common substrate housing all essential RF components. Since RF switches are fabricated directly on a PCB, the need for RF wire bonding and impedance matching to external components is eliminated and packaging is simplified, thus yielding a potentially low-cost, fully integrated RF system technology.; In this dissertation, the RF characteristics of capacitive shunt and series switches are analyzed, measured, and compared with coplanar wave-guide (CPW) and microstrip line structures, which are generally used for transmission lines of MEMS reconfigurable circuits. In addition, two reconfigurable antennas are presented for the pattern re-configuration using rectangular spiral antenna and frequency re-configuration using diagonally fed square patch antenna.; A fully integrated solution providing scan-beam capability with a single antenna is presented. The proposed system includes a reconfigurable rectangular spiral antenna with a set of MEMS switches, which are monolithically integrated and packaged onto the same substrate. The system is based on a single-arm rectangular spiral antenna, capable of changing its radiation pattern using RF-MEMS switches. The rectangular spiral and RF-MEMS switches are monolithically integrated on a conventional microwave substrate printed circuit board (epsilon r = 3.27 and tan delta = 0.004) and quartz substrate (epsilon r = 3.78 and tan delta = 0.0002).; Reconfigurable square patch antenna integrated with RF-MEMS switches is presented as well. The proposed antenna radiates circularly polarized wave at selectable dual frequencies, which are 4.7 GHz and 7.5GHz, with high frequency ratio of 1.6:1. The switches are incorporated into the diagonally fed square patch for controlling the operation frequency, and a rectangular stub attached to the edge of the patch acts as the perturbation to produce the circular polarization. Gain of proposed antenna is 5--6dBi. The antenna satisfies the 3dB axial ratio criterion at the both operating frequencies.; The excellent performance of the proposed reconfigurable system emphasizes the importance of being able to integrate MEMS switches into the same low loss substrate for antenna applications. This technology pioneers the design of arbitrarily shaped reconfigurable antennas including the design of reconfigurable antenna arrays.
机译:RF-MEMS(微机电系统)是一种新兴技术,正在彻底改变RF和微波应用。 RF-MEMS开关是各种RF-MEMS电路的基本构建块。这些开关具有出色的RF性能,具有极低的插入损耗和高隔离度。此外,它们以低功率工作,具有出色的线性度和极低的信号失真。这些功能使它们对于现代通信应用非常有吸引力。 RF-MEMS开关已集成为可重配置电路。通过使用RF-MEMS开关,已经证明了各种RF电路,例如可重构天线,可调滤波器和移相器,其性能优于传统半导体器件。这种可重新配置性突出了RF-MEMS开关的优势。提出了一种单片制造工艺,以将RF-MEMS开关直接集成在印刷电路板(PCB)上的可重构电路中。必须在容纳所有基本RF组件的通用基板上开发RF-MEMS开关的可制造性。由于RF开关是直接在PCB上制造的,因此消除了对RF引线键合和与外部组件的阻抗匹配的需求,并且简化了封装,从而产生了潜在的低成本,完全集成的RF系统技术。本文对电容式并联开关和串联开关的射频特性进行分析,测量,并与通常用于MEMS可重构电路的传输线的共面波导(CPW)和微带线结构进行比较。另外,提出了两个可重配置的天线,用于使用矩形螺旋天线的模式重配置和使用对角馈送的方形贴片天线的频率重配置。提出了一种完全集成的解决方案,可通过单个天线提供扫描波束功能。所提出的系统包括具有一组MEMS开关的可重构矩形螺旋天线,这些MEMS开关被单片集成并封装在同一基板上。该系统基于单臂矩形螺旋天线,能够使用RF-MEMS开关改变其辐射方向图。矩形螺旋和RF-MEMS开关被单片集成在传统的微波基板印刷电路板上(εr = 3.27,tanδ= 0.004)和石英基板(εr = 3.78,tanδ= 0.0002)。还介绍了与RF-MEMS开关集成的可重构方形贴片天线。拟议中的天线以4.7 GHz和7.5 GHz的可选双频辐射圆极化波,高频比为1.6:1。开关被合并到对角馈入的方形贴片中,以控制工作频率,而贴在贴片边缘的矩形短管则充当产生圆极化的扰动。建议的天线增益为5--6dBi。天线在两个工作频率下均满足3dB的轴向比率标准。所提出的可重构系统的出色性能强调了将MEMS开关集成到天线应用的同一低损耗基板中的重要性。这项技术开创了任意形状的可重构天线的设计,包括可重构天线阵列的设计。

著录项

  • 作者

    Jung, Chang Won.;

  • 作者单位

    University of California, Irvine.;

  • 授予单位 University of California, Irvine.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 121 p.
  • 总页数 121
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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