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Design and implementation of an aperture coupled microstrip power divider for array antennas.

机译:用于阵列天线的孔径耦合微带功率分配器的设计和实现。

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摘要

Power divider circuits are used in radio/microwave frequency applications to split an input signal over two or more output signals with equal or unequal amplitude or phase. Effective design of power dividers is crucial to minimize the dimensions and losses of microwave systems, such as antenna feeders, especially for large phased array antennas. Wilkinson and Gysel are among the popular power dividers and are often implemented using microstrip circuits to achieve minimal insertion loss, high isolation between output ports and exceptional phase and amplitude balance. But to use them in recent multilayer devices such as laminated multi-chip modules, vertical transitions are needed to distribute the input and output ports in different layers. However, the use of these transitions increases the insertion loss of the power divider and limits the operational bandwidth.;In this research work, a stacked aperture coupled microstrip power divider is proposed which is compatible with multilayer technology. The basic idea is to use multilayer rectangular resonant patches coupled via rectangular apertures in the common ground planes to excite equal or un-equal in-phase output signals. Design equations are formulated and professional software is to optimize the key characteristics of a power divider, such as: insertion loss, isolation, Internal power dissipation, amplitude and phase balance. Prototypes of the designed equal and unequal 2-way power dividers are fabricated and tested using vector network analyzer. The experimental results from the hybrid power dividers are used to validate the design process of the N-way multilayer power dividers. Prototype of the 4-way power dividers is also designed. Finally, the application of the divider is implemented using 2 x 2 planar arrays on multilayer substrates. The results from both simulation and experiment ascertain the suitability of these power dividers in array antenna application.
机译:功率分配器电路用于无线电/微波频率应用,以将输入信号分配到两个或多个振幅或相位相等或不相等的输出信号上。有效的功率分配器设计对于最小化微波系统(例如天线馈线)的尺寸和损耗至关重要,尤其是对于大型相​​控阵天线而言。威尔金森(Wilkinson)和吉赛尔(Gysel)是最受欢迎的功率分配器之一,通常使用微带电路实现,以实现最小的插入损耗,输出端口之间的高度隔离以及出色的相位和幅度平衡。但是,要将它们用于最新的多层设备(如层压多芯片模块)中,需要垂直过渡以将输入和输出端口分布在不同的层中。然而,这些过渡的使用增加了功率分配器的插入损耗并限制了工作带宽。在这项研究工作中,提出了一种与多层技术兼容的堆叠孔径耦合微带功率分配器。基本思想是使用在公共接地平面中通过矩形孔耦合的多层矩形谐振贴片来激发相等或不相等的同相输出信号。制定了设计方程式,并使用专业软件来优化功率分配器的关键特性,例如:插入损耗,隔离度,内部功耗,幅度和相位平衡。使用矢量网络分析仪制造并测试了设计的相等和不相等的2路功率分配器的原型。混合功率分配器的实验结果用于验证N路多层功率分配器的设计过程。还设计了4路功率分配器的原型。最后,使用多层基板上的2 x 2平面阵列来实现分隔器的应用。仿真和实验的结果都确定了这些功率分配器在阵列天线应用中的适用性。

著录项

  • 作者

    Taiwo, Sulaiman Lanre.;

  • 作者单位

    King Fahd University of Petroleum and Minerals (Saudi Arabia).;

  • 授予单位 King Fahd University of Petroleum and Minerals (Saudi Arabia).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.S.
  • 年度 2010
  • 页码 150 p.
  • 总页数 150
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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