Aqlan Basem, Himdi Mohamed, Vettikalladi Hamsakutty, Le-Coq Laurent
Institut d'Electronique et des Technologies du numéRique (IETR), UMR CNRS 6164, Université de Rennes 1, Campus de Beaulieu, 35042, Rennes Cedex, France.
Department of Electrical Engineering, King Saud University, Riyadh, 11421, Saudi Arabia.
Sci Rep. 2021 Apr 8;11(1):7703. doi: 10.1038/s41598-021-87076-3.
A low-cost, compact, and high gain Fabry-Perot cavity (FPC) antenna which operates at 300 GHz is presented. The antenna is fabricated using laser-cutting brass technology. The proposed antenna consists of seven metallic layers; a ground layer, an integrated stepped horn element (three-layers), a coupling layer, a cavity layer, and an aperture-frequency selective surface (FSS) layer. The proposed aperture-FSS function acts as a partially reflective surface, contributing to a directive beam radiation. For verification, the proposed sub-terahertz (THz) FPC antenna prototype was developed, fabricated, and measured. The proposed antenna has a measured reflection coefficient below - 10 dB from 282 to 304 GHz with a bandwidth of 22 GHz. The maximum measured gain observed is 17.7 dBi at 289 GHz, and the gain is higher than 14.4 dBi from 285 to 310 GHz. The measured radiation pattern shows a highly directive pattern with a cross-polarization level below - 25 dB over the whole band in all cut planes, which confirms with the simulation results. The proposed antenna has a compact size, low fabrication cost, high gain, and wide operating bandwidth. The total height of the antenna is 1.24 [Formula: see text] ([Formula: see text] at the design frequency, 300 GHz) , with a size of 2.6 mm × 2.6 mm. The proposed sub-THz waveguide-fed FPC antenna is suitable for 6G wireless communication systems.
本文介绍了一种工作在300GHz的低成本、紧凑型、高增益法布里-珀罗腔(FPC)天线。该天线采用激光切割黄铜技术制造。所提出的天线由七个金属层组成:一个接地层、一个集成阶梯喇叭元件(三层)、一个耦合层、一个腔层和一个孔径频率选择表面(FSS)层。所提出的孔径FSS功能充当部分反射表面,有助于产生定向波束辐射。为进行验证,开发、制造并测量了所提出的太赫兹(THz)FPC天线原型。所提出的天线在282至304GHz频段的测量反射系数低于-10dB,带宽为22GHz。在289GHz观察到的最大测量增益为17.7dBi,在285至310GHz频段增益高于14.4dBi。测量的辐射方向图显示出高度定向的方向图,在所有切割平面的整个频段内交叉极化水平低于-25dB,这与仿真结果相符。所提出的天线尺寸紧凑、制造成本低、增益高且工作带宽宽。天线的总高度为1.24[公式:见正文](在设计频率300GHz时为[公式:见正文]),尺寸为2.6mm×2.6mm。所提出的太赫兹波导馈电FPC天线适用于6G无线通信系统。