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Directivity enhancement of aperture coupled microstrip patch antenna using two layers dielectric superstrate

机译:使用两层介电覆层增强孔径耦合微带贴片天线的方向性

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Electromagnetic Band-Gap (EBG) structures are popular and efficient techniques for microwave applications; they are periodic metallic or dielectric materials. EBG may be combined with microstrip patch antenna to increase the directivity, the radiation efficiency and/or to suppress surface waves, to reduce the side lobes of the radiation pattern and to increase the bandwidth. In this paper, we study the influence of Unidimensionnel Electromagnetic Band Gap structure (1D-EBG) on the performances of an aperture coupled rectangular patch antenna. This 1D-EBG is chosen as two similar dielectric layers disposed above the patch. The return loss, radiation pattern, and directivity are studied using HFSS software. The simulation results show that the gain, directivity and S11 parameter of the antenna with dielectric superstrate layers are increased at X band (8-12GHz). Compared with the patch feed with the same aperture size but without dielectric layers, the performance of the proposed antenna is improved obviously.
机译:电磁带隙(EBG)结构是用于微波应用的流行且有效的技术。它们是周期性的金属或介电材料。 EBG可以与微带贴片天线结合使用,以提高方向性,辐射效率和/或抑制表面波,以减少辐射方向图的旁瓣并增加带宽。在本文中,我们研究了单向电磁带隙结构(1D-EBG)对孔径耦合矩形贴片天线性能的影响。选择该1D-EBG作为位于贴片上方的两个相似的介电层。使用HFSS软件研究回波损耗,辐射方向图和方向性。仿真结果表明,在X波段(8-12GHz)处,带电介质覆盖层的天线的增益,方向性和S11参数均增加。与具有相同孔径尺寸但没有介电层的贴片馈源相比,所提出的天线的性能有了明显提高。

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