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用于太赫兹应用的高增益天线阵列设计

Design of High-Gain Antenna Arrays for Terahertz Applications.

作者信息

Ji Xinran, Chen Yu, Li Jing, Wang Dian, Zhao Yue, Wu Qiannan, Li Mengwei

机构信息

School of Instrument and Electronics, North University of China, Taiyuan 030051, China.

School of Information Engineering, Shanxi Vocational University of Engineering Science and Technology, Jinzhong 030619, China.

出版信息

Micromachines (Basel). 2024 Mar 18;15(3):407. doi: 10.3390/mi15030407.

Abstract

A terahertz band (0.1-10 THz) has the characteristics of rich spectrum resources, high transmission speed, strong penetration, and clear directionality. However, the terahertz signal will suffer serious attenuation and absorption during transmission. Therefore, a terahertz antenna with high gain, high efficiency, and wide bandwidth is an indispensable key component of terahertz wireless systems and has become a research hotspot in the field of antennas. In this paper, a high-gain broadband antenna is presented for terahertz applications. The antenna is a three-layer structure, fed by a grounded coplanar waveguide (GCPW), using polytetrafluoroethylene (PTFE) material as the dielectric substrate, and the metal through-hole of the dielectric substrate forms a substrate-integrated waveguide (SIW) structure. The metal fence structure is introduced to reduce the coupling effect between the radiation patches and increase the radiation bandwidth and gain. The center frequency is 0.6366 THz, the operating bandwidth is 0.61-0.68 THz, the minimum value of the voltage standing wave ratio (VSWR) is 1.00158, and the peak gain is 13.14 dBi. In addition, the performance of the designed antenna with a different isolation structure, the length of the connection line, the height of the substrate, the radius of the through-hole, and the thickness of the patch is also studied.

摘要

太赫兹频段(0.1 - 10太赫兹)具有频谱资源丰富、传输速度快、穿透性强和方向性好等特点。然而,太赫兹信号在传输过程中会遭受严重的衰减和吸收。因此,高增益、高效率和宽带宽的太赫兹天线是太赫兹无线系统不可或缺的关键部件,并已成为天线领域的研究热点。本文提出了一种用于太赫兹应用的高增益宽带天线。该天线为三层结构,由接地共面波导(GCPW)馈电,使用聚四氟乙烯(PTFE)材料作为介质基板,介质基板的金属通孔形成基片集成波导(SIW)结构。引入金属围栏结构以降低辐射贴片之间的耦合效应,并增加辐射带宽和增益。中心频率为0.6366太赫兹,工作带宽为0.61 - 0.68太赫兹,电压驻波比(VSWR)最小值为1.00158,峰值增益为13.14 dBi。此外,还研究了具有不同隔离结构、连接线长度、基板高度、通孔半径和贴片厚度的设计天线的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/34e6/10971839/080ae6d22e5c/micromachines-15-00407-g001.jpg

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