首页> 外文期刊>IEEE Antennas and Wireless Propagation Letters >A Wideband PCB-Stacked Air-Filled Luneburg Lens Antenna for 5G Millimeter-Wave Applications
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A Wideband PCB-Stacked Air-Filled Luneburg Lens Antenna for 5G Millimeter-Wave Applications

机译:用于5G毫米波应用的宽带PCB堆叠的充气Luneburg镜头天线

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摘要

This letter presents a novel wideband printed circuit board (PCB)-stacked Luneburg lens antenna with a flared open edge for multibeam scanning application at 5G millimeter-wave band. The lens consists of two groups of parallel PCBs. Each group includes 12 layers of low-cost FR4 PCB, which are fixed by metal screws. Inside the lens there is no dielectric, resulting in an air-filled structure. With drilling holes of different radius in each PCB layer (except the top and bottom layers), the air spacing between the two groups of PCBs varies discretely which approximates the graded refractive index. Eleven antipodal linearly tapered antennas are placed on the focuses of the lens as feed elements, permitting the beam to cover a wide angular range. To enhance the gain of the lens, the radiation aperture is flared, like an H-plane horn. Measurements of the lens antenna with a diameter of 130 mm show good agreement with the theoretical predictions. The measured impedance bandwidth covers 26-37 GHz with isolations better than 18.8 dB. The measured peak gain is around 15.4 dBi at 29 GHz. By switching the 11 feed elements, the overall 2-D beam scanning coverage is up to +/- 72 degrees. The results indicate that the proposed Luneburg lens antenna demonstrates a good application potential for 5G millimeter wave wireless communication.
机译:这封信介绍了一种新型宽带印刷电路板(PCB)袋装Luneburg镜头天线,具有喇叭形的开口边缘,用于在5g毫米波带上进行多芯扫描应用。镜头由两组并行PCB组成。每组包括12层低成本FR4 PCB,由金属螺钉固定。在镜头内部没有电介质,导致充满空气的结构。通过在每个PCB层(顶层和底层除外的不同半径的钻孔(顶部和底层),两组PCB之间的空间间距是离散的,这近似于渐变折射率。 11个抗双向线性锥形天线放置在透镜的焦点上作为进料元件,允许光束覆盖宽角度范围。为了增强镜片的增益,辐射孔辐射,如H平面喇叭。直径为130 mm的镜头天线的测量与理论预测显示出良好的一致性。测量的阻抗带宽覆盖26-37GHz,分离优于18.8 dB。测量的峰值增益为29 GHz约为15.4 dBi。通过切换11个进料元件,总体2-D光束扫描覆盖范围高达+/- 72度。结果表明,所提出的Luneburg透镜天线显示出5G毫米波无线通信的良好应用潜力。

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