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Reconfigurable Microstrip Bandpass Filters, Phase Shifters Using Piezoelectric Transducers, and Beam-scanning Leaky-wave Antennas

机译:可重新配置的微带带通滤波器,使用压电换能器的移相器和波束扫描漏波天线

摘要

In modern wireless communication and radar systems, filters play an important role in getting a high-quality signal while rejecting spurious and neighboring unwanted signals. The filters with reconfigurable features, such as tunable bandwidths or switchable dual bands, also play a key part both in realizing the compact size of the system and in supporting multi-communication services. The Chapters II-IV of this dissertation show the studies of the filters for microwave communication. Bandpass filters realized in ring resonators with stepped impedance stubs are introduced. The effective locations of resonant frequencies and transmission zeros are analyzed, and harmonic suppression by interdigital-coupled feed lines is discussed. To vary mid-upper and mid-lower passband bandwidths separately, the characteristic impedances of the open-circuited stubs are changed. Simultaneous change of each width of the open-circuited stub results in variable passband bandwidths. Asymmetric stepped-impedance resonators are also used to develop independently controllable dual-band (2.4 and 5.2 GHz) bandpass filters. By extending feed lines, a transmission zero is created, which results in the suppression of the second resonance of 2.4-GHz resonators. To determine the precise transmission zeros, an external quality factor at feeders is fixed while extracting coupling coefficients between the resonators. Two kinds of feed lines, such as hook-type and spiral-type, are developed, and PIN diodes are controlled to achieve four states of switchable dual-band filters. Beam-scanning features of the antennas are very important in the radar systems. Phase shifters using piezoelectric transducers and dielectric leaky-wave antennas using metal strips are studied in the Chapters V-VII of this dissertation. Meandered microstrip lines are used to reduce the size of the phase shifters working up to 10 GHz, and reflection-type phase shifters using piezoelectric transducers are developed. A dielectric film with metal strips fed by an image line with a high dielectric constant is developed to obtain wide and symmetrical beam-steering angle.In short, many techniques are presented for realizing reconfigurable filters and large beam-scan features in this dissertation. The result of this work should have many applications in various wireless communication and radar systems.
机译:在现代的无线通信和雷达系统中,滤波器在获取高质量信号的同时,还要抑制杂散和相邻的有害信号,因此起着重要作用。具有可重配置功能(例如可调带宽或可切换双频段)的滤波器在实现系统的紧凑尺寸和支持多通信服务方面也起着关键作用。本文的第二章至第四章介绍了微波通信滤波器的研究。介绍了在带阶跃阻抗短截线的环形谐振器中实现的带通滤波器。分析了谐振频率和传输零点的有效位置,并讨论了叉指耦合馈线的谐波抑制。为了分别改变中上和中下通带带宽,将改变开路短截线的特征阻抗。开路短截线的每个宽度的同时变化会导致可变的通带带宽。非对称步进阻抗谐振器也用于开发可独立控制的双频带(2.4和5.2 GHz)带通滤波器。通过延长馈线,可以创建零传输,从而抑制了2.4 GHz谐振器的第二次谐振。为了确定精确的传输零点,在提取谐振器之间的耦合系数的同时,固定馈线的外部品质因数。开发了两种馈线,例如钩型和螺旋型,并控制PIN二极管以实现可切换双频滤波器的四种状态。天线的波束扫描功能在雷达系统中非常重要。本文的第五章至第七章研究了使用压电换能器的移相器和使用金属条的介电泄漏波天线。弯曲的微带线用于减小工作至10 GHz的移相器的尺寸,并开发了使用压电换能器的反射型移相器。为了获得宽而对称的光束转向角,人们开发了一种由金属带通过图像线馈电的高介电常数薄膜,以得到宽且对称的光束转向角。简而言之,本文提出了许多实现可重构滤波器和大型光束扫描特性的技术。这项工作的结果应在各种无线通信和雷达系统中具有许多应用。

著录项

  • 作者

    Kim Chan Ho;

  • 作者单位
  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 en_US
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