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Pattern diversity of path loss compensated antennas for 5G base stations

机译:5G基站的路径损耗补偿天线的模式分集

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In this article, a tapered slot antenna (TSA) operating from 27 to 29.8 GHz with an endfire gain of 9 dBi and high pattern integrity is presented. The gain specifications for path loss compensation on ground for a ceiling mounted millimeter wave base station is computed and the gain of the antenna elements with beam angled at +/- 45 degrees was found to be 12 dBi. To enhance gain with minimal physical footprint, a combination of dielectric loading and electrical resonator metamaterial unit cells were integrated to the proposed TSA to achieve the expected gain enhancement of 3 dB across the band, operating in the same frequency band with aperture efficiency greater than 73% and a 1 dB gain bandwidth of 20.7%. A compact stacking topology for pattern diversity of all three antenna elements for path loss compensation is also investigated. The base station has a coverage of +/- 60 degrees with uniform illumination and mutual coupling lesser than 35 dB. The detailed simulated and measured results are presented.
机译:在本文中,介绍了工作在27至29.8 GHz范围内,端射增益为9 dBi和高模式完整性的锥形缝隙天线(TSA)。计算了安装在天花板上的毫米波基站的地面上的路径损耗补偿的增益规格,发现波束角度为+/- 45度的天线元件的增益为12 dBi。为了以最小的物理占位面积增加增益,将介电负载和电谐振器超材料单晶胞的组合集成到了拟议的TSA中,以实现在整个频带上实现3 dB的预期增益增强,并在相同的频带下工作,孔径效率大于73 %和1dB的增益带宽20.7%。还研究了用于所有三个天线元件的模式分集的紧凑堆叠拓扑,用于路径损耗补偿。基站的覆盖范围为+/- 60度,照明均匀,相互耦合小于35 dB。给出了详细的模拟和测量结果。

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