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Design and Optimization of Tunable Matching Networks and Aperture-Tuned Antennas for Mobile Wireless Devices

机译:移动无线设备可调匹配网络和孔径调谐天线的设计与优化

摘要

In the current wireless market, users have a high level of expectations regarding the functionalities and services added to their wireless mobile devices. At the same time, they also expect performance to remain optimal. In order to meet users’ heightened expectations, the level of integration between different subsystems of wireless radios must increase exponentially to keep pace with the increased demand of functionalities. For example, the current size limitations for mobile wireless devices allow space for only a single antenna, but this antenna must cover dual frequency bands, the first extending from 800MHz to 960MHz and the second from 1710MHz to 2300MHz. Extending the antenna bandwidth to cover the lower edge of the spectrum without increasing the physical size of the antenna is a challenging task. Meanwhile, there is also a demand to decrease antenna size to achieve more compact wireless mobile devices and to free up space for newly added features. One means to achieve these contradicting requirements is to use impedance tuners to enable a small-sized antenna to cover wider range of frequencies. In this thesis, we investigate some methods of applying impedance tuners. First, we conduct a comprehensive study on the tuning range of multiple network topologies, after which we present a design method to substitute impractical and expensive variable inductors with practical and relatively inexpensive fixed inductors connected to variable capacitors. These serve as building blocks for impedance tuners. This is followed by a performance investigation of a readily available tunable capacitor. The equivalent circuit is extracted at different bias voltages and across the frequency range of interest. This circuit model is used in the fourth part of this thesis as an input to the simulator. Next, we conduct multiple simulation runs to demonstrate the major differences between two methods of impedance tuning: a tunable matching network and an aperture-based antenna tuning. The simulation results demonstrate the performance limitations of each technique. Finally, we verify the study findings by measurements in an anechoic RF chamber, discovering that the conducted measurements conform to the obtained simulation results.
机译:在当前的无线市场中,用户对添加到其无线移动设备中的功能和服务抱有很高的期望。同时,他们还希望性能保持最佳状态。为了满足用户的更高期望,无线电的不同子系统之间的集成度必须成倍增加,以跟上不断增长的功能需求。例如,当前对移动无线设备的尺寸限制仅允许为单个天线留出空间,但是该天线必须覆盖双频段,第一个频段从800MHz扩展到960MHz,第二个频段从1710MHz扩展到2300MHz。扩展天线带宽以覆盖频谱的下边缘而不增加天线的物理尺寸是一项艰巨的任务。同时,还需要减小天线尺寸以实现更紧凑的无线移动设备并为新增加的功能腾出空间。实现这些矛盾要求的一种方法是使用阻抗调谐器,使小型天线能够覆盖更宽的频率范围。在本文中,我们研究了一些应用阻抗调谐器的方法。首先,我们对多种网络拓扑的调谐范围进行了全面的研究,然后提出了一种设计方法,用连接到可变电容器的实用且相对便宜的固定电感器代替不切实际且昂贵的可变电感器。这些用作阻抗调谐器的构建块。接下来是对现成的可调电容器的性能研究。在不同的偏置电压和感兴趣的频率范围内提取等效电路。该电路模型在本文的第四部分中用作仿真器的输入。接下来,我们进行多次仿真,以证明两种阻抗调谐方法之间的主要区别:可调谐匹配网络和基于孔径的天线调谐。仿真结果证明了每种技术的性能局限性。最后,我们通过在消声RF室中进行测量来验证研究结果,发现所进行的测量符合所获得的仿真结果。

著录项

  • 作者

    Mankaruse George;

  • 作者单位
  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 en
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