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EM lens design using thin planar metasurfaces for high antenna gain and low SLL applications

机译:使用薄平面超颖表面的EM透镜设计可实现高天线增益和低SLL应用

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摘要

A novel electromagnetic (EM) lens with high gain, suppressed side-lobe level (SLL) and low profile is designed using thin planar metasurfaces. The proposed design consists of a source patch antenna and an EM lens based on two thin planar metasurfaces. The two thin metasurfaces with an air gap are placed at the focal distance H of about lambda/2.25 above the source patch antenna. This configuration forms a thin planar lens in which the source patch antenna emitted quasi-spherical wave in order to transform into plane wave. The total size of source antenna and an EM lens is same. The miniaturised EM lens antenna faces high SLL, which can be reduced by maintaining the uniform transmission phase coefficient and tunable transmission amplitude coefficient of metasurface unit cells. By implementing this topology on metasurfaces, the SLL of the proposed EM lens can be reduced without affecting the boresight gain of source patch antenna. The measured results of the proposed EM lens achieve 7 dB gain enhancement at designed frequency (5.8 GHz) with the SLL suppression of -24 dB. The total volume of planar lens antenna is 1.17 lambda x 1.17 lambda x lambda/2.25 mm(3), which is very compact compared with other reported planar lens designs.
机译:使用薄的平面超表面设计了一种新颖的电磁(EM)透镜,该透镜具有高增益,抑制的旁瓣电平(SLL)和低剖面。提议的设计包括一个源极贴片天线和一个基于两个薄平面超表面的EM透镜。具有气隙的两个薄的超颖表面被放置在源贴片天线上方约λ/ 2.25的焦距H处。该构造形成了薄的平面透镜,其中源贴片天线发射准球形波以转换成平面波。源天线和EM透镜的总尺寸相同。小型化的EM透镜天线面临较高的SLL,可以通过保持超晶格单位单元的均匀透射相位系数和可调透射振幅系数来降低SLL。通过在超表面上实现此拓扑,可以降低所提出的EM透镜的SLL,而不会影响源贴片天线的视轴增益。建议的EM镜头的测量结果在设计频率(5.8 GHz)处实现了7 dB的增益增强,而SLL抑制为-24 dB。平面透镜天线的总体积为1.17 lambda x 1.17 lambda x lambda / 2.25 mm(3),与其他报道的平面透镜设计相比非常紧凑。

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