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Phased Hemispherical Lens Antenna for 1-D Wide-Angle Beam Scanning

机译:一维广角波束扫描的相控半球透镜天线

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摘要

A Ka-band hemispherical lens antenna fed by a phased array antenna (PAA) for 1-D wide-angle beam scanning is presented. The hemispherical lens antenna with two dielectric layers is designed based on the combination of geometrical optics (GOs) and finite-element method (FEM), thus the computational complexity can be reduced without loss of accuracy. A modification procedure is then proposed to efficiently modify the lens antenna for wide-angle scanning property. Finally, the lens is fabricated through 3-D printing technology in spite of its complex shapes. A linear patch array is employed to feed the hemispherical lens antenna. By utilizing the conjugate field matching (CFM) method, the proposed lens antenna is able to achieve 1-D beam scanning with about 2.6 dB/5 dB gain loss as scanning to +/- 45 degrees/60 degrees. The measured results show that the proposed lens antenna has a low profile with a focus-to-diameter ratio (F/D) of only 0.14, and aperture efficiency for the on-axis beam is 52% at 27.3 GHz. The proposed antenna is highly suitable for 5G mm-wave wireless communication with the advantages of wide-angle beam scanning, low cost, and ease of fabrication.
机译:提出了一种由相控阵天线(PAA)馈电的Ka波段半球透镜天线,用于一维广角波束扫描。基于几何光学(GOs)和有限元方法(FEM)的组合设计了具有两个介电层的半球透镜天线,因此可以降低计算复杂度而不会损失精度。然后提出修改程序,以有效地修改透镜天线的广角扫描特性。最后,尽管镜片形状复杂,但仍通过3D打印技术制造。采用线性贴片阵列为半球形透镜天线供电。通过利用共轭场匹配(CFM)方法,所提出的透镜天线能够实现一维波束扫描,扫描到+/- 45度/ 60度时,增益损失约为2.6 dB / 5 dB。测量结果表明,所提出的透镜天线外形小巧,焦距直径比(F / D)仅0.14,并且在27.3 GHz时同轴光束的孔径效率为52%。所提出的天线非常适合5G毫米波无线通信,具有广角波束扫描,低成本和易于制造的优点。

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