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Multi-layer periodic surfaces and metasurfaces for high-gain antennas

机译:用于高增益天线的多层周期表面和超曲面

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摘要

Novel highly-directive Fabry-Perot (FP) type antennas with significantly enhanced bandwidth performance based on periodic metasurfaces are presented in this thesis. The proposed antennas are formed by multiple layers of periodic surfaces and metasurfaces placed over a ground plane and a low directivity primary source. Initially, multi-layer FP antennas of half wavelength air cavities are investigated as an effort to achieve broadband highly-directive response and generalize the concept of the directivity-bandwidth product enhancement by adding appropriately designed PRS layers in FP type antennas. Subsequently, the limitations of this technique are investigated by studying the dispersion characteristics of the modes supported in multi-layer FP LWAs, providing a full interpretation of the operation of multi-layer Fabry-Perot LWAs. Moreover, a new concept of designing sub-wavelength profile multi-layer FP antennas by replacing the conventional PRSs with optimized composite metasurfaces is proposed outperforming previous designs of the same profile. Finally, an FP antenna operating at sub-millimetre wave frequencies is designed and presented based on micromachined fully metalized SU8 at around 300GHz. An in-house fabrication process is employed for the implementation of a prototype and measurement results are also presented in this thesis. This work offers an interesting new solution for planar high-gain low cost antennas for such high frequencies.
机译:本文提出了一种基于周期性超表面的,具有显着增强的带宽性能的新型高指向性Fabry-Perot(FP)型天线。所提出的天线由放置在接地平面和低方向性主源上的多层周期性表面和超颖表面形成。最初,研究半波长气腔的多层FP天线,以实现宽带高度指向性响应,并通过在FP型天线中添加适当设计的PRS层来概括方向性-带宽乘积增强的概念。随后,通过研究多层FP LWA支持的模式的色散特性,研究了该技术的局限性,从而对多层Fabry-Perot LWA的操作提供了完整的解释。此外,提出了一种通过用优化的复合超表面代替传统的PRS设计亚波长轮廓多层FP天线的新概念,其性能优于先前的相同轮廓设计。最后,基于在300GHz左右的微加工全金属化SU8设计并提出了一种以亚毫米波频率工作的FP天线。本文采用了内部制造工艺来实现原型,并给出了测量结果。这项工作为这种高频率的平面高增益低成本天线提供了有趣的新解决方案。

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  • 作者

    Konstantinidis Konstantinos;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 English
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