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具有圆柱形介质单元的Ka波段反射阵列:优化增材制造与高介电常数材料特性分析

Ka-Band Reflectarray with Cylindrical Dielectric Unit Cells: Optimized Additive Manufacturing and High-Permittivity Material Characterization.

作者信息

Beccaria Michele, Massaccesi Andrea, Lumia Mauro, Addamo Giuseppe, Freni Angelo, Pirinoli Paola

机构信息

Department of Electronics and Telecommunications, Politecnico di Torino, 10129 Turin, Italy.

IEIIT, National Research Council, 10129 Torino, Italy.

出版信息

Sensors (Basel). 2025 Sep 3;25(17):5480. doi: 10.3390/s25175480.

Abstract

This paper discusses the design, manufacturing, and experimental characterization of a Ka-band fully dielectric reflectarray realized using Zetamix ε 7.5 ceramic material and additive manufacturing. Properly tuning the infill during the manufacturing process, it is possible to control the permittivity of the material, which can therefore be considered, to all intents and purposes, an additional degree of freedom for optimizing the unit cell and consequently the reflectarray performance. The optimal values of εr are determined through numerical analysis of the unit cell and experimental characterization of bricks manufactured with different printing parameters. Then, the unit cell is used to design a medium-sized reflectarray with an aperture of 207.4λ02 and a thickness of 0.44λ0, at the design frequency f0=30 GHz. The full-wave simulations of the designed RA and experimental measurements of a prototype confirm the excellent performance of the antenna, which exhibits a broadband flat response from 28 to 31 GHz and an aperture efficiency exceeding 50%.

摘要

本文讨论了一种使用Zetamix ε 7.5陶瓷材料和增材制造实现的Ka波段全介质反射阵列的设计、制造和实验表征。在制造过程中适当地调整填充率,可以控制材料的介电常数,因此可以认为这在各方面都是优化单元结构从而优化反射阵列性能的一个额外自由度。通过对单元结构的数值分析以及对用不同打印参数制造的砖块进行实验表征,确定了相对介电常数的最佳值。然后,使用该单元结构设计了一个中型反射阵列,在设计频率f0 = 30 GHz时,孔径为207.4λ02,厚度为0.44λ0。对所设计反射阵列的全波模拟和一个原型的实验测量证实了该天线的优异性能,其在28至31 GHz范围内呈现宽带平坦响应,孔径效率超过50%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d673/12430966/f4fe53c2a68f/sensors-25-05480-g001.jpg

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