首页> 外文期刊>Physica, B. Condensed Matter >Effect of photonic crystal and frequency selective surface implementation on gain enhancement in the microstrip patch antenna at terahertz frequency
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Effect of photonic crystal and frequency selective surface implementation on gain enhancement in the microstrip patch antenna at terahertz frequency

机译:光子晶体和频率选择性表面实现对太赫兹频率微带贴片天线增益增强的影响

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摘要

In this paper, microstrip patch antenna with frequency selective surface (FSS) and photonic band gap (PBG) structures in the frequency range of 0.5-0.7 THz is presented for wireless communications. Proposed patch antenna is designed on a substrate with uniform and non-uniform PBG structures. Here, the effects of substrate thickness, various radii and arrangement of holes on antenna resonance in both PBG forms are studied. Near zero characteristic on uniform and non-uniform PBG substrate is compared and the results show that along with increase in hole radius, antenna operating frequency and bandwidth are increased. Also, the FSS structure is designed as a perfect absorber. Finally, by using FSS and PBG structures simultaneously, gain enhancement, increase in directivity and pattern shaping are studied at THz field. The antenna gain in final structure is increased by 2 dBi (32%) in comparison to simple form and Half-Power beam width is reduced from 100° × 80° in simple form to 72° × 48° by using FSS and PBG. All simulations and designs are done by Ansoft HFSS and CST Microwave Studio simulation tools with different full wave methods.
机译:本文提出了一种具有频率选择表面(FSS)和光子带隙(PBG)结构且频率范围为0.5-0.7 THz的微带贴片天线,用于无线通信。建议的贴片天线设计在具有均匀和非均匀PBG结构的基板上。在这里,研究了两种PBG形式的基板厚度,各种半径和孔的布置对天线谐振的影响。比较了均匀和非均匀PBG基板上接近零的特性,结果表明,随着孔半径的增加,天线的工作频率和带宽也随之增加。而且,FSS结构被设计为理想的吸收体。最后,通过同时使用FSS和PBG结构,在THz场上研究了增益增强,方向性增加和图案整形。通过使用FSS和PBG,与简单形式相比,最终结构中的天线增益增加了2 dBi(32%),并且半功率波束宽度从简单形式的100°×80°减小为72°×48°。所有仿真和设计均由Ansoft HFSS和CST Microwave Studio仿真工具以不同的全波方法完成。

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