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Enhancing the performance of EBG resonator antennas by individually truncating the superstructure layers

机译:通过分别截断上部结构层来提高EBG谐振器天线的性能

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摘要

The role of superstructure finiteness in improving the peak directivity and the directivity bandwidth (DBW) of electromagnetic band gap (EBG) resonator antennas (ERAs) is studied. Simple one- and two-layer superstructures consisting of unprinted dielectric slabs are used for this purpose. In the latter case, each dielectric slab is truncated individually to improve the ERA performance. Initially, existing analytical models that only take into account the reflection characteristics of the superstructure are used to predict the peak obtainable directivity and the directivity bandwidth. Detailed numerical studies are then conducted to observe the validity of these analytical predictions and to study the ERA performance for various finite sizes of the superstructure. It is found that DBW as well as the peak directivity of the antenna is strongly influenced by the size of the superstructure. Moreover, in case of two-layer superstructures, carefully designing each layer to have a different finite size improved the DBW product of an ERA by more than 65%. Experimental results of three ERA prototypes are presented to validate the trends observed in the numerical findings.
机译:研究了上层结构有限性在提高电磁带隙(EBG)谐振天线(ERAs)的峰值方向性和方向性带宽(DBW)中的作用。为此目的,使用由未印刷的介电平板组成的简单的一层和两层上部结构。在后一种情况下,每个介电板都会被截断以提高ERA性能。最初,仅考虑上部结构的反射特性的现有分析模型用于预测峰值可获得的方向性和方向性带宽。然后进行详细的数值研究,以观察这些分析预测的有效性,并研究各种有限尺寸的上部结构的ERA性能。已经发现,DBW以及天线的峰值方向性都受到上部结构尺寸的强烈影响。而且,在两层上部结构的情况下,仔细地设计每一层以具有不同的有限尺寸可以将ERA的DBW乘积提高65%以上。提出了三个ERA原型的实验结果,以验证数值结果中观察到的趋势。

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