Quality control of substances by electromagnetic sensing in a waveguide

В. Овсяніков, М.М. Горобець, О. Р. Безносова, V. Ovsyanikov, N. Gorobets, E. Beznosova
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Abstract

Relevance. The problems of remote non-destructive determination and control of quality indicators of a wide variety of material environments, in particular, household and food products, are relevant practically for all areas of the national economy, science and technology. The relevance of scientific research in the field of dielectrometry in the microwave range is also due to the needs for the development of high technologies in medicine and health care, the national economy in real time. The aim of this work is to develop the method of microwave waveguide dielectrometry based on the application of the theory of multilayer plane-layered dielectric structures to the determination of the complex dielectric constant of a substance from the values ​​of the standing wave ratio of the samples under study in a waveguide at two close frequencies. Materials and methods. The research is based on well-studied phenomena of interference of electromagnetic waves on multilayer plane-layered dielectric structures. By using a mathematical model of the phenomenon of interference of a plane electromagnetic wave on a three-layer dielectric structure, the ambiguity of determining the complex dielectric constant of a substance by the classical method of waveguide dielectrometry in the microwave range by measuring the standing wave ratio of a dielectric sample placed in the waveguide and the phase angle of the reflection coefficient is overcome. Results. A method is proposed for ensuring the unambiguity of determining the complex dielectric constant of a substance in waveguide dielectrometry on the basis of the theory of multilayer plane-layered dielectric structures. The method leads to an explicit expression for the complex reflection coefficient of an electromagnetic wave from the investigated dielectric sample placed in a rectangular waveguide. The complex dielectric constant of a substance is determined from the values ​​of the standing wave ratio at two close frequencies in the microwave range. By the found value of the dielectric constant and the tangent of the dielectric loss angle, the quality parameter of the substance is determined by comparing and optimizing two objective functions, including the arrays of reference values ​​of the complex dielectric constant obtained in the course of measurements and compiled in advance, and by comparing and optimizing the third objective function, previous functions. As an example of an indicator of the quality of a substance, the specific heat of combustion of coal was determined. Conclusions. The proposed method for determining the complex dielectric constant and quality indicators of dielectric materials in the microwave frequency range has been tested in the case of various types of coals, its efficiency has been proven and the reliability of the results has been proven. The method and the devices and software implemented on its basis are promising for non-destructive express control of dielectric materials and media.
用波导中的电磁感应来控制物质的质量
的相关性。远距离无损地确定和控制各种物质环境,特别是家庭和食品产品的质量指标的问题,实际上与国民经济、科学和技术的所有领域有关。微波范围内介电测量领域的相关科学研究也是由于医药卫生高技术发展的需要,对国民经济的实时影响。本工作的目的是在多层平面层介电结构理论的基础上,发展微波波导介电测量的方法,通过研究样品在波导中两个接近频率的驻波比值来确定物质的复介电常数。材料和方法。该研究是基于电磁波对多层介质结构的干扰现象的充分研究。通过建立平面电磁波对三层介质结构干涉现象的数学模型,克服了微波范围内传统的波导介电测量方法通过测量放置在波导中的介电样品的驻波比和反射系数的相位角来确定物质复介电常数的歧义。基于多层平面层状介电结构理论,提出了一种保证波导介电法测定物质复介电常数的无歧义性的方法。该方法得到了放置在矩形波导中所研究的介质样品的电磁波复反射系数的显式表达式。物质的复介电常数是由微波范围内两个相近频率处的驻波比值确定的。通过对测得的介电常数和介电损耗角的正切值进行比较和优化,确定物质的质量参数,这两个目标函数包括测量过程中事先编制的复介电常数参考值数组,以及对第三个目标函数即之前的函数进行比较和优化。作为物质质量指标的一个例子,测定了煤的燃烧比热。本文提出的微波频率范围内介电材料复介电常数和质量指标的测定方法在不同类型煤的情况下进行了试验,证明了该方法的有效性和结果的可靠性。该方法以及在其基础上实现的器件和软件有望实现介质材料和介质的无损快速控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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