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Back radiation suppression through a semi-transparent round ground plane for a mm-Wave monopole antenna

机译:毫米波单极天线通过半透明圆形接地面的反向辐射抑制

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摘要

Omnidirectional radiation pattern with minimum backward radiation is highly desirable for millimeter-wave telecommunication antennas. In this work, we propose a round, semitransparent ground plane of radius 0.8λ with uniform impedance distribution that can reduce the back radiation of a monopole antenna by 8.8 dB as compared with a similar sized metallic ground plane. The value of uniform impedance is obtained through analytical optimization by using asymptotic expressions in the Kirchhoff approximation of the radiation pattern of a toroidal wave scattered by a round semitransparent ground plane. The semitransparent ground plane has been realized using a low-cost carbon paste on a Kapton film. Experimental results match closely with those of simulations and validate the overall concept.
机译:毫米波电信天线非常需要具有最小反向辐射的全向辐射方向图。在这项工作中,我们提出了一个半径为0.8λ的圆形半透明接地平面,具有均匀的阻抗分布,与类似尺寸的金属接地平面相比,可以将单极天线的反向辐射降低8.8 dB。通过使用圆形半透明地平面散射的环形波辐射方向图的基尔霍夫近似,通过渐近表达式通过解析优化获得均匀阻抗的值。已在Kapton薄膜上使用低成本的碳糊实现了半透明的接地平面。实验结果与模拟结果非常吻合,并验证了整体概念。

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