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Measurement of liquids dielectric property using monopole probes operating at microwave frequencies

机译:使用在微波频率下工作的单极探针测量液体的介电性能

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Determination of the dielectric properties of liquids has high practical potential in many industrial, medical, as well as environmental sectors. With the increasing demand for efficient measurement systems, the need arises for a reliable, inexpensive, hand-held, battery operated, and user-friendly system for liquids dielectric properties measurement. In this paper, a microwave nondestructive evaluation (NDE) system that is intended to meet these requirements is proposed. This system utilizes a monopole antenna to transmit microwave signals into the liquid and monitors the reflected waves in the feeding coaxial line. The functional dependence of the reflection coefficient on the dielectric property of the liquid surrounding the monopole will be employed in our measurement schema - i.e. we will be measuring the reflection coefficient and then solving the inverse problem. In general, this dependence is nonlinear in nature and requires sophisticated algorithm to be inverted. To this end, we will introduce a Fuzzy-Maximum-Likelihood (FML) hybrid algorithm to be applied in conjunction with multi-frequency measurements to solve the inverse problem.
机译:液体介电性质的测定在许多工业,医疗和环境部门具有高实际潜力。随着对高效测量系统的需求越来越多,需要采用可靠,廉价,手持,电池供电和用于液体介电特性测量的用户友好型系统。本文提出了一种旨在满足这些要求的微波无损评估(NDE)系统。该系统利用单极天线将微波信号传递到液体中,并监视进料同轴线中的反射波。反射系数对围绕单极液体的介电特性的功能依赖性将采用在我们的测量模式中 - 即,我们将测量反射系数,然后求解逆问题。通常,该依赖性本质上是非线性的,并且需要复杂的算法倒置。为此,我们将介绍一种模糊最大可能性(FML)混合算法要与多频测量一起应用以解决逆问题。

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