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A Microwave Method for Dielectric Characterization Measurement of Small Liquids Using a Metamaterial-Based Sensor

机译:基于超材料的传感器的微波液体小体积介电特性测量方法

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摘要

We present a microwave method for the dielectric characterization of small liquids based on a metamaterial-based sensor The proposed sensor consists of a micro-strip line and a double split-ring resonator (SRR). A large electric field is observed on the two splits of the double SRRs at the resonance frequency (1.9 GHz). The dielectric property data of the samples under test (SUTs) were obtained with two measurements. One is with the sensor loaded with the reference liquid (REF) and the other is with the sensor loaded with the SUTs. Additionally, the principle of extracting permittivity from measured changes of resonance characteristics changes of the sensor loaded with REF and SUTs is given. Some measurements were carried out at 1.9 GHz, and the calculated results of methanol–water mixtures with different molar fractions agree well with the time-domain reflectometry method. Moreover, the proposed sensor is compact and highly sensitive for use of sub-wavelength resonance. In comparison with literature data, relative errors are less than 3% for the real parts and 2% for the imaginary parts of complex permittivity.
机译:我们提出了一种基于基于超材料的传感器对小液体进行介电表征的微波方法。所提出的传感器由微带线和双开口环谐振器(SRR)组成。在共振频率(1.9 GHz)下,在双SRR的两个分割处观察到一个大电场。通过两次测量获得了被测样品(SUT)的介电性能数据。一种是传感器装有参比液(REF),另一种是传感器装有SUT。另外,给出了从加载了REF和SUT的传感器的谐振特性变化的测量变化中提取介电常数的原理。在1.9 GHz处进行了一些测量,不同摩尔分数的甲醇-水混合物的计算结果与时域反射法非常吻合。此外,所提出的传感器是紧凑的并且对于使用亚波长谐振是高度敏感的。与文献数据相比,复介电常数的实部相对误差小于3%,虚部小于2%。

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