Metamaterial absorber using conventional inkjet-printing technology applied to antennas

V. Fusco, G. G. Machado, R. Cahill, G. Conway
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Abstract

In this paper, we will present recent work at QUB in the area of ink-jet printed absorbers with applications in electromagnetic compatibility and spectral response control. A radio frequency (RF) enhanced spacecraft multi-layer insulator (MLI) was engineered by patterning its outermost layer using a resistively loaded hexagonal patch FSS. The structure ranges in thickness between λ/213 − λ/25 and absorbs unwanted reflections to decouple onboard antennas from the spacecraft’s structure. In addition, we also show the design of an antenna superstrate absorber designed for radar cross-section (RCS) reduction. The new antenna arrangement is capable of beam steering, preserving its beam shape when compared to the reference antenna, whilst reducing the RCS by 10 dB over a wide frequency range.
利用传统的喷墨打印技术将超材料吸收器应用于天线
在本文中,我们将介绍QUB在喷墨印刷吸收剂领域的最新工作,以及在电磁兼容性和光谱响应控制方面的应用。利用电阻加载的六边形贴片FSS对航天器多层绝缘体的最外层进行图像化,设计了一种射频增强型航天器多层绝缘体。该结构的厚度范围在λ/213 - λ/25之间,可以吸收不需要的反射,从而将机载天线与航天器结构分离。此外,我们还展示了用于雷达横截面(RCS)减小的天线上盖吸收器的设计。与参考天线相比,新的天线布置能够进行波束控制,保持其波束形状,同时在宽频率范围内将RCS降低10 dB。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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