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Design of high gain Vivaldi antenna with a compound optical lens inspired by metamaterials

机译:高增益Vivaldi天线,具有超材料的化合物光学镜头

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摘要

A kind of compound optical lens (COL) inspired by metamaterials whose unit cell is a closed symmetric S-type resonator (CSSR) is designed to enhance the gain and directivity of the antipodal Vivaldi antenna (AVA). COL, composed of a plano-convex lens and a double-convex lens, can generate a very narrow beam with a half-power beamwidth of 11.2° at 12 GHz. Traditional metamaterial lenses can only convert spherical waves into plane waves. Although the gain will increase, the beamwidth of the antenna is still very wide. COL can focus the plane wave transformed from the spherical wave, which makes the radiation beam extremely narrow. The proposed antenna has a −10 dB impedance bandwidth of 169.2% (1.0-12.0 GHz) and a −3 dB gain bandwidth of 133.3% (2.0-10.0 GHz) and a maximum gain enhancement of 5 dBi. The experimental results of the antennas agree with the simulation results. The proposed antenna is eventually a suitable candidate for wireless communications and radar applications.
机译:设计了一种由超材料的化合物光学透镜(COL),其单位电池是闭合对称S型谐振器(CSSR),以增强反双向Vivaldi天线(AVA)的增益和方向性。由平面凸透镜和双凸透镜组成的COL可以产生非常窄的光束,在12 GHz处具有11.2°的半功率波束宽度。传统的超材料镜片只能将球形波转换成平面波。虽然增益会增加,但天线的波束仍然非常宽。 COL可以聚焦从球面波变换的平面波,这使得辐射束极窄。所提出的天线具有-10 dB阻抗带宽为169.2%(1.0-12.0GHz)和-3 dB增益带宽为133.3%(2.0-10.0GHz)和5 dBi的最大增益增强。天线的实验结果与模拟结果一致。所提出的天线最终是用于无线通信和雷达应用的合适候选者。

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