Suppr超能文献

双负超材料正方形封闭 Q.S.S.R. 用于 S 波段的微波传感应用,具有高灵敏度和 Q 因子。

Double-negative metamaterial square enclosed Q.S.S.R For microwave sensing application in S-band with high sensitivity and Q-factor.

机构信息

Faculty of Engineering (F.O.E.), Multimedia University (MMU), 63100, Cyberjaya, Selangor, Malaysia.

Department of Electrical, Electronic and Systems Engineering, Faculty of Engineering and Built Environment, University Kebangsaan Malaysia, 43600, Bangi, Malaysia.

出版信息

Sci Rep. 2023 May 5;13(1):7373. doi: 10.1038/s41598-023-34514-z.

Abstract

Metamaterials have gained much attention due to their exciting characteristics and potential uses in constructing valuable technologies. This paper presents a double negative square resonator shape metamaterial sensor to detect the material and its thickness. An innovative double-negative metamaterial sensor for microwave sensing applications is described in this paper. It has a highly sensitive Q-factor and has good absorption characteristics approximately equal to one. For the metamaterial sensor, the recommended measurement is 20 by 20 mm. Computer simulation technology (C.S.T.) microwave studios are used to design the metamaterial structure and figure out its reflection coefficient. Various parametric analyses have been performed to optimize the design and size of the structure. The experimental and theoretical results are shown for a metamaterial sensor that is attached to five different materials such as, Polyimide, Rogers RO3010, Rogers RO4350, Rogers RT5880, and FR-4. A sensor's performance is evaluated using three different thicknesses of FR-4. There is a remarkable similarity between the measured and simulated outcomes. The sensitivity values for 2.88 GHz and 3.5 GHz are 0.66% and 0.19%, respectively, the absorption values for both frequencies are 99.9% and 98.9%, respectively, and the q-factor values are 1413.29 and 1140.16, respectively. In addition, the figure of merit (FOM) is analyzed, and its value is 934.18. Furthermore, the proposed structure has been tested against absorption sensor applications for the purpose of verifying the sensor's performance. With a high sense of sensitivity, absorption, and Q-factor, the recommended sensor can distinguish between thicknesses and materials in various applications.

摘要

超材料由于其独特的特性和在构建有价值技术方面的潜在应用而备受关注。本文提出了一种用于检测材料及其厚度的双负方谐振腔形状超材料传感器。本文描述了一种用于微波传感应用的创新型双负超材料传感器。它具有高灵敏度 Q 因子和接近 1 的良好吸收特性。对于超材料传感器,建议的测量尺寸为 20 毫米乘 20 毫米。计算机模拟技术(C.S.T.)微波工作室用于设计超材料结构并确定其反射系数。进行了各种参数分析以优化结构的设计和尺寸。实验和理论结果显示了附着在 Polyimide、Rogers RO3010、Rogers RO4350、Rogers RT5880 和 FR-4 等五种不同材料上的超材料传感器。使用 FR-4 的三种不同厚度来评估传感器的性能。测量结果和模拟结果之间存在显著的相似性。在 2.88GHz 和 3.5GHz 时的灵敏度值分别为 0.66%和 0.19%,两个频率的吸收率分别为 99.9%和 98.9%,Q 因子值分别为 1413.29 和 1140.16。此外,还分析了品质因数(FOM),其值为 934.18。此外,还针对吸收传感器应用对所提出的结构进行了测试,以验证传感器的性能。由于具有高灵敏度、吸收率和 Q 因子,建议的传感器可以在各种应用中区分厚度和材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7d9/10163240/2e69efbf4d94/41598_2023_34514_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验