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首页> 外文期刊>Journal of Electromagnetic Waves and Applications >Nondestructive measurement of complex permittivity by a microwave technique: detection of contamination and food quality
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Nondestructive measurement of complex permittivity by a microwave technique: detection of contamination and food quality

机译:微波技术无损测量复杂介电常数:污染和食品质量的检测

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摘要

In this paper, we interested of wideband measurement system that permits to characterize high- and low-loss materials according to physical and chemical properties of cheddar cheese and beef. The proposed measurements system, spanning a frequency range of 1-18 GHz, is constituted by one port junction of a small diameter >mm) coaxial probe and a standard rectangular waveguide. Theoretical reflection coefficient is obtained using the generalized equivalent circuit method that takes into account most of the involved physical phenomena. Thus, the effect of higher order modes as well as the dominant modes is considered. The complex permittivity of material is extracted by minimizing the difference between the theoretical and measured reflection coefficient. The complexity of the electromagnetic analysis does not allow to find an analytical relation between these two parameters. A computer code based on genetic algorithm is developed to numerically solve the inverse problem. To validate this program, we perform measurements on standard materials of known permittivity as air and FR4 (Flame Resistant 4) in the 1-18 GHz range.
机译:在本文中,我们对宽带测量系统感兴趣的是,允许根据切达干酪和牛肉的物理和化学性质表征高损耗材料。所提出的测量系统,跨越1-18GHz的频率范围,由小直径> mm的一个端口交界处构成同轴探针和标准矩形波导。使用考虑大部分涉及的物理现象的广义等效电路方法获得理论反射系数。因此,考虑了高阶模式以及优势模式的影响。通过最小化理论和测量的反射系数之间的差异来提取材料的复杂介电常数。电磁分析的复杂性不允许在这两个参数之间找到分析关系。基于遗传算法的计算机代码开发为数字地解决了逆问题。为了验证该程序,我们在1-18GHz范围内为空气和FR4(阻燃4)进行已知介电常数的标准材料的测量。

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