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Phased Array 5G Antenna Design with Petal-Shaped Beams and Improved Radiation Coverage

机译:分阶段阵列5G天线设计,具有花瓣状梁和改进的辐射覆盖率

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The focus of this study is to introduce a new technique to increase the radiation coverage of a phased array 5G antenna. The structure of the phased array design contains eight compact T-shaped slots with single directors, discrete feeding, and 1×8 linear arrangement on the edge of the mobile-phone PCB. By modifying the size of the employed radiators, the antenna is capable to provide petal-shaped beams at different scanning angles, which improves the radiation coverage of the 5G mobile-phone phased array. The elements of the design are etched on the same layer of the ground plane. The proposed array is highly compact which occupies less than 5 mm (clearance) of the PCB plane. The critical properties of the introduced phased array are investigated. The designed antenna exhibits wide beam-steering, high efficiencies, and sufficient gain levels at 28 GHz, the main 5G band.
机译:本研究的重点是引入一种新的技术来增加分阶段阵列5G天线的辐射覆盖率。 相控阵设计的结构包含八个紧凑的T形插槽,单个导向器,离散送料和1×8在移动电话PCB的边缘上的线性排列。 通过改变所采用的散热器的尺寸,天线能够以不同的扫描角度提供花瓣状梁,这改善了5G移动电话相控阵的辐射覆盖范围。 设计的元件蚀刻在接地平面的同一层上。 所提出的阵列非常紧凑,占据PCB平面的小于5mm(间隙)。 研究了引入的相控阵的关键特性。 设计的天线在28GHz,主5G频段上表现出宽的光束转向,高效率和足够的增益水平。

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