摘要
介电常数是表征材料介电特性的物理量,随着微波电介质在航空器、船舶及车辆和通信等领域的广泛应用,介电常数的精确测量成为人们研究的一个重要内容。为了提高介电常数的测量精度,文章首先提出一种加载六边形互补开口谐振环(CSRR)的微波无损平面传感器。将六边形CSRR微带谐振器与传统的四边形CSRR微带谐振器进行对比,分析结果表明,六边形CSRR较四边形CSRR微带谐振器具有较高的灵敏度,且品质因数也有一定的提高。然后,研究了六边形CSRR微带谐振器谐振频率的变化与介电常数的相互作用规律,仿真结果表明,当待测样品的介电常数变大时,其谐振频率变小,且谐振频率的负二次方与介电常数呈线性关系;将仿真数据进行数据拟合得到介电常数与谐振频率之间的解析式,验证了通过测量加载待测样品时传感器的谐振频率实现对待测样品介电常数测量的可能性,对以后的工程设计具有重要的参考价值。
The dielectric constant is a physical quantity that characterizes the dielectric properties of a material.With the use of microwave dielectrics in aircraft,ships,vehicles,communications,and other fields,the accurate measurement of dielectric constant has become a hot research topic.In order to improve the measurement accuracy of dielectric constant,a microwave non-destructive planar sensor loaded with hexagonal Complementary Split Ring Resonator(CSRR)is proposed.Comparing with the traditional quadrilateral CSRR microstrip resonator,the analysis results show that the hexagonal CSRR microstrip resonator has higher sensitivity than the quadrilateral CSRR,and the quality factor is also improved.Then,the interaction of the resonant frequency and the dielectric constant of the hexagonal CSRR microstrip resonator is studied.The simulation results show that when the dielectric constant of the measured sample becomes larger,the resonant frequency becomes smaller.The negative quadratic and the dielectric constant are linearly related.The analytical data of the dielectric constant and the resonant frequency are obtained by fitting the data of the simulation data,which are verified by measuring the resonant frequency of the sample when loading the measured sample.The proposed measurement method has important reference value in future engineering design.
作者
李永倩
胡佩佩
孙景芳
LI Yong-qian;HU Pei-pei;SUN Jing-fang(School of Electrical and Electronic Engineering,North China Electric Power University,Baoding 071003,China)
出处
《光通信研究》
北大核心
2019年第1期45-48,65,共5页
Study on Optical Communications
基金
国家自然科学基金资助项目(61775057)
中央高校基本科研业务费资助项目(2014MS103)
关键词
介电常数
六边形CSRR
微扰法
谐振频率
dielectric constant
hexagonal CSRR
perturbation method
resonant frequency