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首页> 外文期刊>Components, Packaging and Manufacturing Technology, IEEE Transactions on >A Novel Two-Layer Low-Profile 23-GHz Microstrip Array Fed by Slots in an SIW for Wireless Backhauling Applications
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A Novel Two-Layer Low-Profile 23-GHz Microstrip Array Fed by Slots in an SIW for Wireless Backhauling Applications

机译:用于无线回传应用的SIW中由插槽供电的新型两层低剖面23-GHz微带阵列

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摘要

This paper proposes a robust option for developing a new class of efficient and cheap antenna array based on patch array fed by substrate-integrated waveguide (SIW) through slot apertures for wireless backhauling applications. It consists in performing the feed network in SIW and the radiating structure in microstrip technology. The microstrip lines are coupled to the slots on the top wall of the SIW. Hence, it is demonstrated that the best alternative of the costly, heavy, and bulky rectangular waveguide feeder is SIW, which provides miniaturization, cost reductions, performance enhancements, and easy integration with patch array antennas. The experimental prototype presented in this paper demonstrates the efficiency of the design method and the feasibility of creating low-cost moderate-bandwidth millimeter-wave planar 8×8 patch antenna array configurations in two stacked substrates to get ultracompact antenna module. The principle of achieving such high-quality antenna array is presented in detail along with experimental verification of theoretical results to validate the design procedure and demonstration of the feasibility of implementing the array by means of relatively inexpensive compact structures. The maximum gain is around 23 dBi at 22.4 GHz, the measured impedance bandwidth is 5%, and the efficiency is around 70%.
机译:本文提出了一种可靠的选择,用于开发一种新型的高效廉价天线阵列,该阵列基于基片集成波导(SIW)通过缝隙孔馈送的贴片阵列,用于无线回程应用。它包括执行SIW中的馈电网络和微带技术中的辐射结构。微带线耦合到SIW顶壁上的插槽。因此,证明了昂贵,笨重和笨重的矩形波导馈线的最佳替代方案是SIW,它可以实现小型化,降低成本,提高性能并易于与贴片阵列天线集成。本文提出的实验原型证明了该设计方法的效率以及在两个堆叠的基板中创建低成本中等带宽毫米波平面8×8贴片天线阵列配置以获得超紧凑天线模块的可行性。详细介绍了实现这种高质量天线阵列的原理,并对理论结果进行了实验验证,以验证设计过程并通过相对便宜的紧凑型结构演示实现该阵列的可行性。在22.4 GHz时,最大增益约为23 dBi,测得的阻抗带宽为5%,效率约为70%。

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