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Gain enhancement evaluation in superstrate-loaded planar antennas

机译:覆板式平面天线的增益增强评估

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An analytical method is proposed for the estimation of gain enhancement in superstrate-loaded microstrip patch antenna, when its dielectric substrate and superstrate are replaced by air. The validity of the proposed analytical model is verified over different physical dimensions of the antenna. Analysis is carried on a rectangular microstrip patch antenna and a hexagonal microstrip patch with various combinations of air and dielectric materials as substrate and superstrates. Rectangular microstrip patch antenna etched on dielectric substrate and loaded with superstrate resonates at 1.67GHz and the same antenna resonates at 2.97GHz when both the dielectrics are replaced with air. Similarly the rectangular microstrip patch resonates at 2.41 GHz when only the substrate is replaced with air and resonates at 1.8 GHz when the superstrate is replaced with air. The hexagonal microstrip patch antenna resonates at 3.9GHz when it is etched on dielectric substrate and loaded with dielectric superstrate. By replacing both dielectric substrate and superstrate with air the hexagonal microstrip patch antenna resonates at 8.3GHz. Similarly, when the substrate is alone replaced with air the hexagonal microstrip patch antenna resonates at 6.7GHz. The hexagonal microstrip patch antenna resonates at 4.3GHz when the superstrate is alone replaced with air. The antenna's performance evaluation is done at their respective resonant frequencies. Alternatively Finite element method based 3D simulator is utilized to calculate the gain enhancement. Both the theoretical and simulation results are comparable with the proposed analytical model.
机译:提出了一种分析方法,用于估计超载加载的微带贴片天线中的增益增强,当其介电基板和叠层被空气取代时。在天线的不同物理尺寸上验证了所提出的分析模型的有效性。在矩形微带贴片天线和六边形微带贴片上携带分析,其具有各种空气和介电材料作为基板和超级物的组合。在介电基板上蚀刻的矩形微带贴片天线,并在1.67GHz上装载叠加在1.67GHz上并在2.97GHz时谐振,当两个电介质都被空气替换。类似地,当仅在空气中仅用空气替换衬底时,矩形微带贴剂在2.41GHz时共振,并且当替换替换时替换为空气。当在介电基板上蚀刻并装载电介质塑料时,六边形微带贴片天线在3.9GHz时共振。通过用空气替换介电基板和叠层,六边形微带贴片天线在8.3GHz上产生谐振。类似地,当衬底单独用空气替换时,六边形微带贴片天线在6.7GHz处产生谐振。当单独用空气替换时,六边形微带贴片天线在4.3GHz时共振。天线的性能评估在其各自的共振频率下完成。可选地,基于有限元方法3D模拟器用于计算增益增强。理论和仿真结果都与所提出的分析模型相当。

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