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基于分裂环谐振器的平面传感器的设计用于非侵入式介电常数测量。

Design of a Planar Sensor Based on Split-Ring Resonators for Non-Invasive Permittivity Measurement.

机构信息

Department of Signal Theory and Communications, Universidad Carlos III de Madrid, 28911 Leganés, Madrid, Spain.

School of Computing and Digital Media, Center for Communications Technology, London Metropolitan University, 166-220 Holloway Road, London N7 8DB, UK.

出版信息

Sensors (Basel). 2023 Jun 2;23(11):5306. doi: 10.3390/s23115306.

Abstract

The permittivity of a material is an important parameter to characterize the degree of polarization of a material and identify components and impurities. This paper presents a non-invasive measurement technique to characterize materials in terms of their permittivity based on a modified metamaterial unit-cell sensor. The sensor consists of a complementary split-ring resonator (C-SRR), but its fringe electric field is contained with a conductive shield to intensify the normal component of the electric field. It is shown that by tightly electromagnetically coupling opposite sides of the unit-cell sensor to the input/output microstrip feedlines, two distinct resonant modes are excited. Perturbation of the fundamental mode is exploited here for determining the permittivity of materials. The sensitivity of the modified metamaterial unit-cell sensor is enhanced four-fold by using it to construct a tri-composite split-ring resonator (TC-SRR). The measured results confirm that the proposed technique provides an accurate and inexpensive solution to determine the permittivity of materials.

摘要

材料的介电常数是表征材料极化程度和识别成分及杂质的重要参数。本文提出了一种基于改进型超材料单元传感器的非侵入式测量技术,用于根据介电常数对材料进行特性描述。该传感器由互补分裂环谐振器(CSRR)组成,但将其边缘电场包含在导电屏蔽中,以增强电场的法向分量。结果表明,通过将单元传感器的相对侧紧密电磁耦合到输入/输出微带馈线,可以激发出两个明显的谐振模式。这里利用基本模式的微扰来确定材料的介电常数。通过使用改进型超材料单元传感器构建三复合分裂环谐振器(TC-SRR),可将传感器的灵敏度提高四倍。测量结果证实,该技术为确定材料的介电常数提供了一种准确、经济的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e233/10255965/53e9564b8165/sensors-23-05306-g001.jpg

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