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使用超表面提高印刷在厚基板上的太赫兹以下频段天线的辐射效率。

Using a metasurface to enhance the radiation efficiency of subterahertz antennas printed on thick substrates.

作者信息

Yashchyshyn Yevhen, Tokarsky Peter

机构信息

Institute of Radioelectronics and Multimedia Technology, Warsaw University of Technology, ul. Nowowiejska 15/19, 00-665, Warsaw, Poland.

Institute of Radio Astronomy of the National Academy of Sciences of Ukraine, Mystetstv St. 4, Kharkiv, 61002, Ukraine.

出版信息

Sci Rep. 2024 Aug 6;14(1):18167. doi: 10.1038/s41598-024-69296-5.

Abstract

This study investigates the possibility of increasing the radiation efficiency of printed antennas and arrays by suppressing their inherent surface waves using a metasurface made of quad-split rings (QSR). A symmetrical resonant microstrip dipole and a four-element series-fed dipole array printed on an infinite grounded dielectric layer (layer thickness: 0.2 mm; relative permittivity: 9.4; tanδ: 0.0005) were simulated with FEKO 2022 software. Conducted at 100-116 GHz, the numerical results revealed extremely low radiation efficiencies of approximately 31% and 40% for the studied dipole and dipole array, respectively, which resulted from the presence of surface waves in the dielectric. However, placing only one QSR near each dipole arm triggered an increase in radiation efficiency by 2.5 times (up to 75%). The use of a metasurface in the form of two small QSR arrays triggered a pronounced improvement in radiation efficiency, reaching 93.6% and 95.8% for the studied dipole and dipole array, respectively. Analysis of the electric field distribution images showed that this enhancement resulted from surface wave suppression.

摘要

本研究探讨了使用由四分裂环(QSR)制成的超表面抑制印刷天线和阵列的固有表面波,从而提高其辐射效率的可能性。使用FEKO 2022软件对印刷在无限大接地介质层(层厚:0.2毫米;相对介电常数:9.4;损耗正切:0.0005)上的对称谐振微带偶极子和四元串联馈电偶极子阵列进行了模拟。在100 - 116吉赫兹频率下进行的数值结果显示,所研究的偶极子和偶极子阵列的辐射效率极低,分别约为31%和40%,这是由介质中表面波的存在导致的。然而,在每个偶极子臂附近仅放置一个QSR会使辐射效率提高2.5倍(高达75%)。使用两个小QSR阵列形式的超表面会显著提高辐射效率,所研究的偶极子和偶极子阵列的辐射效率分别达到93.6%和95.8%。对电场分布图像的分析表明,这种增强是由表面波抑制导致的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4248/11303753/7dee973fd6e0/41598_2024_69296_Fig1_HTML.jpg

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