| Literature DB >> 35334719 |
Jiufu Ruan1,2, Zifan Meng1,2, Ruizhi Zou1,2, Fei Cai2, Shengmin Pan3.
Abstract
A single-layer, quartz-supported frequency selective surface (FSS) with a gear-shaped metallic array is proposed for 6G communication. Full-wave simulation, along with the method of equivalent circuit, is applied to investigate the transmission characteristics, while the distributions of surface current distribution, as well as electric field and magnetic fields, are studied to further interpret the transmission mechanism. The simulation indicates that the resonant frequency of 131 GHz with an attenuation of -40 dB can be obtained and the relative bandwidth approximates to 12%. The transmission response of the fabricated FSS prototype is measured using the free space measurement setup. The measured results show a good agreement with the simulated ones, which demonstrates the reliability of the design and fabrication. The proposed FSS with the advantages of simple structure, low cost, easy fabrication, and integration can be applied in enhancing the communication performance and anti-interference ability in the future 6G communication system.Entities:
Keywords: 6G communication; circuit model; microfabrication; terahertz
Year: 2022 PMID: 35334719 PMCID: PMC8951220 DOI: 10.3390/mi13030427
Source DB: PubMed Journal: Micromachines (Basel) ISSN: 2072-666X Impact factor: 2.891
Figure 1(a) Side view of the proposed FSS; (b) geometry of metallic array.
Figure 2Equivalent circuit model of the proposed FSS.
Figure 3Transmission response under normal incidence: full-wave simulation results (solid line) and equivalent circuit analysis (dashed line).
Figure 4Influence of the structural parameters: (a) period p, (b) outer radius R, (c) width of the circular loop w on transmission response.
Figure 5Transmission response under different incident angles for (a) TE polarization and (b) TM polarization.
Figure 6Distributions of (a) surface current and (b) electric field at resonant frequency.
Figure 7(a) Fabricated prototype of the proposed FSS; (b) Microscopic image of 3 × 3 array; (c) Zoom picture for highlighting the gap.
Figure 8(a) Free space measure setup used for measurement of the proposed FSS. (b) Arrangement of prototype for measurement under different angles.
Figure 9Comparison of measured and simulated results for different incident angle. (a) TE mode. (b) TM mode.
Comparison of the proposed FSS with the reported FSSs operating beyond 100 GHz.
| FSSs in Reference | Type | Bandwidth/GHz | Maximum Angle of Incidence/° | Transmittance at the Notch Frequency/dB |
|---|---|---|---|---|
| [ | Bandpass | 10 | 15 | 0.28 |
| [ | Bandpass | 10 | Not reported | 1 |
| [ | Bandstop | 20 | Not reported | 40 |
| This work | Bandstop | 37 | 60 | 39 |