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具有超颖表面覆盖层的紧密耦合偶极子相控阵天线分析

Analysis of tightly-coupled dipole phased array antennas with metasurface superstrate.

作者信息

Hosseini Seyed Mahdi, Atlasbaf Zahra

机构信息

Faculty of Electrical and Computer Engineering, Tarbiat Modares University, Tehran, Iran.

出版信息

Sci Rep. 2023 Oct 13;13(1):17345. doi: 10.1038/s41598-023-44680-9.

Abstract

Tightly coupled dipole arrays, including connected arrays, and capacitively coupled arrays, are one of the best solutions for wideband phased array antenna designs. However, to increase bandwidth and maximum scan angle, we can use a metasurface superstrate. We propose an analytical model to compute the scan impedance of a tightly coupled dipole array loaded with a metasurface. This analytical model helps us to simplify the calculation of the scan impedance of the array and speeds up the design process of these array antennas. It is shown that the metasurface superstrate improves the bandwidth and beam scanning angles of the array. Using the proposed general transmission line model, the computation of the scan impedance of tightly coupled dipole arrays is done very fast with minimum error. The semi-analytical model is about 7 times faster than a full-wave simulation.

摘要

紧密耦合偶极子阵列,包括连接阵列和电容耦合阵列,是宽带相控阵天线设计的最佳解决方案之一。然而,为了增加带宽和最大扫描角度,我们可以使用超表面覆盖层。我们提出了一个解析模型来计算加载超表面的紧密耦合偶极子阵列的扫描阻抗。这个解析模型有助于我们简化阵列扫描阻抗的计算,并加快这些阵列天线的设计过程。结果表明,超表面覆盖层提高了阵列的带宽和波束扫描角度。使用所提出的通用传输线模型,紧密耦合偶极子阵列扫描阻抗的计算速度非常快,误差最小。该半解析模型比全波模拟快约7倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be47/10575871/8c4b123bb393/41598_2023_44680_Fig1_HTML.jpg

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