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Design of a single layer reflectarray unit cells based on hexagonal ring for wideband operation

机译:基于六角环的宽带反射单层反射阵列单元的设计

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In this paper, a microstrip reflectarray unit cell with different configurations of hexagonal element is presented. The aim is to have a large reflection phase range with comparatively linear phase slope as a function of element size to achieve a wider operational bandwidth of a reflectarray antenna. Full-wave EM simulations are used to investigate the phase characteristics and performance of reflectarray unit cells. The simulated results show that a single-resonance hexagonal ring provides an insufficient reflection phase range (< 360°). It is also shown that multi-resonance hexagonal elements (double hexagonal ring, triple hexagonal ring and hexagonal patch/ring) can provide a reflection phase range exceeding 360°. A centre fed 81-element microstrip reflectarray antenna using one of the proposed structure (double hexagonal ring) is also designed. The simulated results show a constant 3-dB gain bandwidth around the frequency band of 9–12 GHz.
机译:本文提出了一种具有不同六角形结构的微带反射阵列晶胞。目的是具有较大的反射相位范围,并且具有相对线性的相位斜率作为元件尺寸的函数,以实现反射阵列天线的更宽的工作带宽。全波电磁仿真用于研究反射阵列单位晶胞的相位特性和性能。仿真结果表明,单共振六角环提供了不足的反射相位范围(<360°)。还显示出多共振六边形元件(双六边形环,三重六边形环和六边形贴片/环)可以提供超过360°的反射相位范围。还设计了使用所提出的结构之一(双六角环)的中心馈电的81元微带反射阵列天线。仿真结果表明,在9–12 GHz频带附近具有恒定的3dB增益带宽。

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