arrow
返回

High-Accuracy Complex Permittivity Characterization of Solid Materials Using Parallel Interdigital Capacitor- Based Planar Microwave Sensor

delete2021-03-01
delete63
PRE
AI
王
王聪 (Cong Wang)
L
Luqman Ali
孟
孟繁义 (Fan‐Yi Meng)
K
Kishor Kumar Adhikari *
Z
Zhong Liang Zhou
Y
Yuchen Wei
D
Dan Qing Zou
H
He Yu
DOI:10.1109/JSEN.2020.3041014delete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
This paper presents a planar microwave sensor for the sensitive and accurate characterization of complex permittivity of solid materials. To realize the proposed sensor, the combination of a parallel interdigital capacitor and a dual wide gap resonator was etched on the ground plane and coupled with a transmission line in the top plane of a printed circuit board. The main advantage of the proposed sensor configuration lies in the generation of a high-intensity coupled resonating electric field suitable for the sensitive measurement of complex permittivity of solid materials. The high-intensity electric field enhances the coupling and field interaction, and thereby produces a high-accuracy permittivity characterization of a solid material exposed to the maximum field of the proposed sensor. Our developed microwave permittivity sensor, which characterized the complex permittivity of several materials by exploiting the measured shifts in resonance frequencies, exhibited a high sensitivity (up to 37% shift in resonance frequency for 20% change in permittivity) at least 1.5 times higher than previously reported microwave permittivity sensors. In addition, the proposed sensor exhibited 99.9% and 99.7% sensing accuracies for real and imaginary parts of permittivity, respectively, and the measurement results revealed an excellent (0.06758) and high sensitivity (67.58 MHz per unit change in real permittivity).
Keyword:
Sensors
Permittivity
Electric fields
Sensor phenomena and characterization
Microwave sensors
Resonant frequency
Sensitivity
Complex permittivity
parallel interdigital capacitor
planar microwave sensor
resolution
resonant frequency
sensitivity
solid materials
AI总结

AI总结

对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。

期刊

IEEE Sensors Journal 封面图
IEEE Sensors Journal
IF:
4.5
论文数:
2.2W
被引数:
7.3W

机构

H
harbin institute of technology
学者数:
8.0W
论文数: 6.6W
被引数: 66
引用论文

引用论文

Multi-Band RF Planar Sensor Using Complementary Split Ring Resonator for Testing of Dielectric Materials
err2018-08-15
err102
PREAI
errAnsari, M. Arif Hussain; Jha, Abhishek Kumar; Akhter, Zubair; Akhtar, M. Jaleel
err分享
err收藏
PCB-integrated non-destructive microwave sensor for liquid dielectric spectroscopy based on planar metamaterial resonator
err2020-09-01
err59
PREAI
errChuma, Euclides Lourenco; Iano, Yuzo; Fontgalland, Glauco; Bravo Roger, Leonardo Lorenzo; Loschi, Hermes
err分享
err收藏
Perovskite ferroelectric nanomaterials
err2013-01-01
err212
PREAI
errNuraje, Nurxat; Su, Kai
err分享
err收藏
Miniaturized Quasi-Lumped Resonator for Dielectric Characterization of Liquid Mixtures
err2016-03-01
err51
PREAI
errBenkhaoua, Larbi; Benhabiles, Mohamed Taoufik; Mouissat, Smail; Riabi, Mohamed Lahdi
err分享
err收藏
学者 查看更多内容