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High Gain Bow-Tie Slot Antenna Array Loaded With Grooves Based on Printed Ridge Gap Waveguide Technology

机译:高增益蝴蝶结槽天线阵列,基于印刷脊间隙波导技术装载凹槽

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摘要

The development of wireless and satellite communication has led to a demand for high-performance microwaves and mm-wave components in terms of cost, losses, and fabrication complexity. Gap waveguide is one of the emerging technologies in 5G and mm-wave applications due to their low cost, low losses, and high power handling capability. In this paper, a groove-based wideband bow-tie slot antenna array is designed at 30 GHz based on printed ridge gap waveguide technology (PRGW). A two-section T-shaped ridge is designed to feed a bow tie slot placed on the upper ground of the PRGW. The gain of the proposed slot antenna is enhanced by using a horn-like groove. Then, the proposed high gain element is deployed to build up a 1 bow-tie slot antenna array loaded with three-layer groove antenna. The proposed antenna array is fabricated and measured, where the measured results show a -10-dB impedance bandwidth from 29.5 to 37 GHz (22%). The fabricated prototype achieves a high gain of 15.5 dBi and a radiation efficiency higher than 80% over the operating frequency bandwidth.
机译:无线和卫星通信的开发导致了在成本,损失和制造复杂性方面对高性能微波和MM波组件的需求。间隙波导是5G和MM波应用中的新兴技术之一,由于它们的低成本,低损耗和高功率处理能力。本文基于印刷脊间隙间隙波导技术(PRGW),设计了一种基于凹槽的宽带弓形槽天线阵列。两截面T形脊设计成馈送放置在PRGW的上面的船首槽槽。通过使用喇叭状凹槽来增强所提出的槽天线的增益。然后,部署所提出的高增益元件以构建由三层槽天线装载的1个弓形槽天线阵列。制造和测量所提出的天线阵列,其中测量结果显示为29.5至37GHz(22%)的-10-DB阻抗带宽。制造的原型实现了15.5dBi的高增益,并且在工作频率带宽上高于80%的辐射效率。

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