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用于6GHz以下应用的仿生介质谐振器天线的快速成型

Rapid Prototyping of Bio-Inspired Dielectric Resonator Antennas for Sub-6 GHz Applications.

作者信息

Marrocco Valeria, Basile Vito, Marasco Ilaria, Niro Giovanni, Melchiorre Luigi, D'Orazio Antonella, Grande Marco, Fassi Irene

机构信息

STIIMA CNR, Institute of Intelligent Industrial Technologies and Systems for Advanced Manufacturing, National Research Council, Via P. Lembo, 38/F, 70124 Bari, Italy.

Politecnico di Bari, Dipartimento di Ingegneria Elettrica e dell'Informazione, Via E. Orabona 4, 70125 Bari, Italy.

出版信息

Micromachines (Basel). 2021 Aug 29;12(9):1046. doi: 10.3390/mi12091046.

Abstract

Bio-inspired Dielectric Resonator Antennas (DRAs) are engaging more and more attention from the scientific community due to their exceptional wideband characteristic, which is especially desirable for the implementation of 5G communications. Nonetheless, since these antennas exhibit peculiar geometries in their micro-features, high dimensional accuracy must be accomplished via the selection of the most suitable fabrication process. In this study, the challenges to the manufacturing process presented by the wideband Spiral shell Dielectric Resonator Antenna (SsDRA), based on the Gielis superformula, are addressed. Three prototypes, made of three different photopolymer resins, were manufactured by bottom-up micro-Stereolithography (SLA). This process allows to cope with SsDRA's fabrication criticalities, especially concerning the wavy features characterizing the thin spiral surface and the micro-features located in close proximity to the spiral origin. The assembly of the SsDRAs with a ground plane and feed probe was also accurately managed in order to guarantee reliable and repeatable measurements. The scattering parameter S trends were then measured by means of a Vector Network Analyzer, while the realized gains and 3D radiation diagrams were measured in the anechoic chamber. The experimental results show that all SsDRAs display relevant wideband behavior of 2 GHz at -10 dB in the sub-6 GHz range.

摘要

受生物启发的介质谐振器天线(DRA)因其卓越的宽带特性而越来越受到科学界的关注,这对于5G通信的实现尤为重要。然而,由于这些天线在微观特征上呈现出特殊的几何形状,必须通过选择最合适的制造工艺来实现高精度的尺寸。在本研究中,探讨了基于吉利斯超公式的宽带螺旋壳介质谐振器天线(SsDRA)在制造过程中面临的挑战。通过自下而上的微立体光刻(SLA)技术制造了三个由三种不同光聚合物树脂制成的原型。该工艺能够应对SsDRA的制造关键问题,特别是关于薄螺旋表面的波浪形特征以及靠近螺旋原点的微观特征。为了确保可靠且可重复的测量,还精确管理了SsDRA与接地平面和馈电探针的组装。然后通过矢量网络分析仪测量散射参数S的趋势,同时在消声室中测量实现的增益和三维辐射方向图。实验结果表明,所有SsDRA在低于6GHz的范围内,在-10dB时均表现出2GHz的显著宽带特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f80/8470297/1f5e7e39e0ca/micromachines-12-01046-g0A1.jpg

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