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A New Type 3D Printing Microwave Resonant Cavity for Materials Moisture Sensing

机译:一种新型3D打印微波谐振腔,用于材料湿度传感

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摘要

Regardless of agriculture, forestry, mining, animal husbandry, a high-precision, discerning material moisture content sensing system has a wide range of needs. With reference to the microwave detection technology for dielectric coefficient and moisture content of material, we designed a front-end microwave resonant cavity for measuring the moisture content of the material is realized by 3D printing technology, and its function is successfully measured. This article first analyzes the coaxial cavity TEM mode resonance conditions and the calculation method of quality factors. The electromagnetic simulation software (High Frequency Structure Simulator; HFSS) is used for simulation, and the adjustment of the relationship between the size of the resonant cavity and the frequency deviation and the theory of dielectric perturbation are explained. The simulated coaxial resonant cavity is realized by 3D printing technology, and it is loaded with soil with different moisture content to construct a relationship between moisture content and frequency deviation.
机译:无论农业,林业,采矿,畜牧业,高精度,辨别物质水分含量传感系统都有广泛的需求。参考微波检测技术进行介电系数和材料的水分含量,我们设计了用于测量材料的水分含量的前端微波谐振腔通过3D印刷技术实现,其功能成功测量。本文首先分析了同轴腔间模式共振条件和质量因素的计算方法。解释了电磁仿真软件(高频结构模拟器; HFSS)用于模拟,并解释了谐振腔尺寸与频率偏差之间的关系的调整和介电扰动理论。模拟同轴谐振腔通过3D印刷技术实现,并且用不同的水分含量加载土壤,以构建水分含量与频率偏差之间的关系。

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