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An Optically Transparent Metasurface-Based Resonant Cavity Fed by Patch Antenna for Improved Gain

机译:由贴片天线馈电的基于光学透明的基于超表面的谐振腔以提高增益

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摘要

An optically transparent metasurface (MS) is proposed to design a resonant cavity fed by a patch antenna operating at 5.6 GHz. In the proposed MS, a transparent micro metal mesh conductive (MMMC) film is used as the transparent conducting film (TCF), and it has a high optical transmittance of more than 75% and a low sheet resistance of 0.7 Ω/sq. The MS is composed of a layer of glass substrate and a layer of MMMC film. The unit cell of MS consists of a square patch using MMMC film patterned on a square glass substrate. The transparent MS, patch antenna, ground plane, and air-filled half-wavelength cavity form a resonant cavity antenna, to achieve an improved gain. The MS is designed, optimized and analyzed using the EM simulation software CST. Results show that the MS can improve the simulated boresight gain from 4.7 to 13.2 dBi by 8.5 dB, without affecting the impedance bandwidth (IMBW) much. The losses of MS with different values of sheet resistance are also studied, showing the MS using MMMC with sheet resistance of 0.7 Ω/sq has very small losses.
机译:提出了一种光学透明的超颖表面(MS),以设计由工作在5.6 GHz的贴片天线馈电的谐振腔。在提出的MS中,透明的微金属网状导电(MMMC)膜被用作透明导电膜(TCF),并且其具有大于75%的高透光率和0.7Ω/ sq的低薄层电阻。 MS由一层玻璃基板和一层MMMC膜组成。 MS的晶胞由使用正方形玻璃基板上构图的MMMC膜的正方形贴片组成。透明的MS,贴片天线,接地平面和充满空气的半波长腔构成谐振腔天线,以实现更高的增益。使用EM仿真软件CST对MS进行设计,优化和分析。结果表明,MS可以将模拟视轴增益从4.7 dB提高到13.2 dBi 8.5 dB,而对阻抗带宽(IMBW)的影响不大。还研究了具有不同薄层电阻值的MS的损耗,表明使用MMMC的薄层电阻为0.7Ω/ sq的MS的损耗很小。

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