第五代(5G)砖墙微带小型化超宽带贴片天线的设计与开发

M. Rahman, Md. Ashik Jiddney, Nurul Amin Nahid, Md. Pias Khan, Md. Zulfiker Mahmud, Md. Hafizur Rahman
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引用次数: 1

摘要

本文提出了一种适用于第五代(5G)应用的砖墙型微带馈线天线。采用辐射贴片耦合间隙技术和矩形锯齿定向局部地平面,提高了微带线馈电砖墙形矩形贴片的带宽。该天线的阻抗带宽为21.6-30.0 GHz,覆盖了5G应用的更高带宽。该天线的整体尺寸为21 × 28 mm,采用低成本的商用FR4基板。设计的天线谐振频率为26.15 GHz。谐振频率处的共极化和交叉极化是全向的。在90°指向性下,交叉极化辐射方向图增强,共极化值比交叉极化值更负。地平面上不均匀的槽位为主散热器提供了理想的散热条件。它的辐射效率为44%,整个工作带宽的峰值增益为4.5 dB。利用三维微波工作室计算机仿真技术(CST)作为仿真工具,对天线的几何形状进行了设计和分析。
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Design & Development of Brick Wall Shaped Microstrip Miniaturized Ultra-Wide Band Patch Antenna for Fifth Generation (5G)
In this paper a brick wall shaped microstrip line feed antenna for fifth generation (5G) applications is proposed. The bandwidth of brick wall shaped rectangular patch feed by microstrip line is enhanced by applying the technique of coupling gap on radiating patch and by using the rectangular saw-tooth oriented partial ground plane. The proposed antenna has an impedance bandwidth of 21.6-30.0 GHz which covers the higher bandwidth of 5G applications. The overall size of proposed antenna is $21\times 28\ mm^{2}$ using the low cost commercially available FR4 Substrate. The designed antenna deals with the resonance frequency of 26.15 GHz. The co and cross polarizations at the resonant frequency are observed to be omnidirectional. With 90° directivity, the cross-polarization radiation pattern is enhanced the values of co-polarization are more negative than the values of cross-polarization. The uneven slots on the ground plane help the main radiator to escape trapping by providing ideal conditions. It has radiation efficiency of 44% with the peak gain of 4.5 dB across the operating bandwidth. 3D microwave studio Computer Simulation Technology (CST) is used as simulation tool to design and analyze the antenna geometry.
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