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Ultra-wideband Antennas and Components for Wireless Communication Systems

机译:无线通信系统的超宽带天线和组件

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摘要

Ultra-wideband (UWB) technology is rapidly developing as a high speed, and high data rate wireless communication mode. There are many challenges in dealing with this new emerging technology. One of these challenges is how to design an antenna ele-ment that can operate effectively in the entire UWB frequency range. Another big chal-lenge is to design UWB antenna beamforming systems including suitable UWB compo-nents such as feed networks, transitions, crossovers, hybrid couplers and phase shifters to meet the UWB requirements.udThis thesis is primarily focused on designing UWB antenna elements and other microwave components for UWB wireless communications applications. The thesis starts with designing and implementing different new UWB disc monopole and hybrid anten-nas with discussions covering their operation, electrical behavior and performance. An-tennas are developed using microstrip technology to achieve low profile and compatibil-ity with printed circuit board (PCB) technology. Different techniques for obtaining a bandstop function in the 5.0-6.0 GHz frequency band to avoid interference with other ex-isting wireless local area network (WLAN) systems are numerically and experimentally presented. A UWB feed network prototype based on a modified two-section Wilkinson power divider is then developed. The designed feed network has been used in construct-ing two-element and four-element antenna arrays. The two-element antenna array has a total directive gain of about 5.5–8.5 dBi within the whole UWB frequency band while for the four-element antenna array, the achieved total directive gain is about 7.5–11.5 dBi.udTwo different UWB slot-coupled microstrip-to-microstrip vertical transitions are also addressed. The proposed transitions utilize trapezoidal- and butterfly-shaped mi-crostrip patches at the top and bottom layers. The broadside coupling between microstrip-coupled patches is achieved by cutting a rectangular-shaped slot in the mid-layer ground plane. The designed transitions are used to develop 3dB/90° hybrid couplers with good return loss, insertion loss, coupling and isolation characteristics across the desired fre-quency range. Then two different 45° phase shifters are developed to be used in building 4 × 4 Butler matrices for UWB beamforming applications.udFinally, two compact and inexpensive multiple beamforming network (M-BFN) prototypes are developed. The developed microwave components using multi-layer mi-crostrip PCB technology are used to design 4 × 4 Butler matrices. These matrices avoid using any crossing lines or crossovers and exhibit large bandwidth for UWB applications. To validate the proposed design, experimental prototypes of the proposed 4 × 4 matrices are designed, fabricated and tested. A four patch antenna array is connected to these ma-trices to form multiple beamforming array systems. Simulations are carried out on these beamforming systems and the obtained radiation characteristics are also presented and discussed.
机译:超宽带(UWB)技术正迅速发展为一种高速,高数据速率的无线通信模式。应对这种新兴技术存在许多挑战。这些挑战之一是如何设计一种可以在整个UWB频率范围内有效工作的天线元件。另一个重大挑战是设计UWB天线波束成形系统,其中包括合适的UWB组件,例如馈电网络,过渡,分频器,混合耦合器和移相器,以满足UWB的要求。 ud本文主要着重于设计UWB天线元件和用于UWB无线通信应用的其他微波组件。本文从设计和实现不同的新型UWB圆盘单极天线和混合天线开始,并讨论了它们的操作,电性能和性能。天线是使用微带技术开发的,以实现薄型且与印刷电路板(PCB)技术兼容。数值和实验地提出了用于获得5.0-6.0 GHz频带中的带阻功能以避免与其他现有无线局域网(WLAN)系统发生干扰的不同技术。然后,开发了基于改进的两段式威尔金森功率分配器的UWB馈电网络原型。设计的馈电网络已用于构建二元和四元天线阵列。两元素天线阵列在整个UWB频带内的总定向增益约为5.5-8.5 dBi,而对于四元素天线阵列,所获得的总定向增益约为7.5-11.5 dBi。还讨论了耦合的微带到微带垂直过渡。拟议的过渡利用顶层和底层的梯形和蝴蝶形微带状斑块。微带耦合贴片之间的宽边耦合是通过在中层接地平面上切割一个矩形槽来实现的。设计的过渡用于开发3dB / 90°混合耦合器,在所需的频率范围内具有良好的回波损耗,插入损耗,耦合和隔离特性。然后,开发了两个不同的45°移相器,用于构建用于UWB波束成形应用的4×4 Butler矩阵。 ud最后,开发了两个紧凑且便宜的多波束成形网络(M-BFN)原型。使用多层微带PCB技术开发的微波组件用于设计4×4 Butler矩阵。这些矩阵避免使用任何交叉线或交叉点,并为UWB应用提供了较大的带宽。为了验证所提出的设计,设计,制造和测试了所提出的4×4矩阵的实验原型。四个贴片天线阵列连接到这些矩阵,以形成多个波束成形阵列系统。在这些波束成形系统上进行了仿真,并介绍和讨论了获得的辐射特性。

著录项

  • 作者

    Ahmed Osama Mohamed Haraz;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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