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Wide Angle Beam Steerable High Gain Flat Top Beam Antenna Using Graded Index Metasurface Lens

机译:使用渐变折射率超表面透镜的广角波束可控高增益平顶波束天线

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This paper presents a beam steerable low-profile lens antenna with a flat top wide beam and a high gain operating at 10.10 GHz. It consists of a graded index metasurface (GIMS) lens placed on the top of a microstrip patch antenna (MPA) radiator. An ultrathin linear graded index metasurface (LGIMS) and a radial graded index metasurface (RGIMS) lens were designed for the magnitude and phase transformation of the radiated beam from the microwave radiator. First, an LGIMS lens antenna was designed by placing an LGIMS on the top of an MPA radiator at an optimum height. A maximum measured gain of 16.37 dBi indicating a maximum gain enhancement of 11.50 dB with beam steering in a conical plane with a vertex angle of 84 degrees was observed. Next, a flat top beam (FTB) antenna with a stable gain band was designed by placing an RGIMS on top of an LGIMS lens antenna. The measured peak gain of 14.82 dBi with an FTB pattern having a 1 dB gain variation range of about 96% is observed. Furthermore, the movement of the LGIMS and the RGIMS on top of the radiator results in continuous beam scanning with a maximum gain variation of 1 dB in a conical plane with a vertex angle of about 100%. A maximum gain of 14.82 dBi with a maximum gain enhancement of 10.30 dB at 10.15 GHz was obtained due to the linear and angular movement of the LGIMS and the RGIMS in the FTB antenna. The simulated and measured results are in good agreement.
机译:本文提出了一种波束可控的薄型透镜天线,具有平坦的顶部宽波束和在10.10 GHz下工作的高增益。它由放在微带贴片天线(MPA)辐射器顶部的渐变折射率超表面(GIMS)透镜组成。设计了超薄线性渐变折射率超颖表面(LGIMS)和径向渐变折射率超颖表面(RGIMS)透镜,用于对来自微波辐射器的辐射束进行幅度和相位转换。首先,通过将LGIMS以最佳高度放置在MPA辐射器的顶部来设计LGIMS透镜天线。观察到最大测量增益为16.37 dBi,表明在锥角为84度的圆锥形平面中光束转向时最大增益提高了11.50 dB。接下来,通过将RGIMS放在LGIMS透镜天线的顶部,设计了具有稳定增益带的平顶波束(FTB)天线。观察到具有1dB增益变化范围约为96%的FTB模式的测得峰值增益为14.82 dBi。此外,LGIMS和RGIMS在辐射器顶部的移动会导致连续光束扫描,在顶角约为100%的圆锥形平面中,最大增益变化为1 dB。由于FTB天线中LGIMS和RGIMS的线性和角向运动,在10.15 GHz处获得的最大增益为14.82 dBi,最大增益为10.30 dB。仿真和测量结果吻合良好。

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