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首页> 外文期刊>Journal of Computational Electronics >Analysis and design of terahertz microstrip antenna on photonic bandgap material
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Analysis and design of terahertz microstrip antenna on photonic bandgap material

机译:光子带隙材料上太赫兹微带天线的分析与设计

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In this paper, a dielectric slab with periodic implantation of the air gaps has been analyzed. An effective dielectric permittivity of the 1-D photonic bandgap substrate material (PBG material) with host material as Polytetraflu-oroethylene (PTFE) has been computed at 600 GHz. Based on the extracted effective dielectric permittivity, a rectangular microstrip patch antennas on thin and thick 2-D PBG material as substrate have been designed. The electrical performances of the antennas have been simulated by using two different simulators, CST Microwave Studio based on the finite integral technique and Ansoft HFSS based on the finite element method. This proposed antenna on the PBG material as substrate shows the significant enhancement in the directivity. To validate the homogenized medium approximation, the effect of the antenna position on the substrate material has been observed. The response of antenna has been found to be independent of its position. Various electrical parameters of the proposed antennas have been compared with reported literature. In addition to this, the operating frequency of one of the antenna has been scaled down by the factor of 50 and its various results have been compared with the results obtained at 600 GHz.
机译:在本文中,分析了周期性注入气隙的介电平板。已经在600 GHz处计算了1-D光子带隙基体材料(PBG材料)与主体材料为聚四氟乙烯(PTFE)的有效介电常数。基于提取的有效介电常数,设计了以薄而厚的二维PBG材料为基底的矩形微带贴片天线。天线的电性能已通过使用两种不同的仿真器进行了仿真:基于有限积分技术的CST Microwave Studio和基于有限元方法的Ansoft HFSS。 PBG材料作为衬底上的这种拟议天线显示出方向性的显着提高。为了验证均质化的介质近似值,已经观察到天线位置对基板材料的影响。已经发现天线的响应与其位置无关。所提出的天线的各种电参数已与文献进行了比较。除此之外,其中一个天线的工作频率已按比例缩小了50倍,并将其各种结果与在600 GHz下获得的结果进行了比较。

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