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A Liquid-Level Sensor Based on a Hollow Coaxial Cable Fabry–Perot Resonator With Micrometer Resolution

机译:基于空心同轴电缆法布里-珀罗谐振器且具有微米分辨率的液位传感器

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摘要

For the first time, a hollow coaxial cable Fabry-Perot resonator (FPR)-based liquid-level sensor with centimeter dynamic range and micrometer resolution is proposed and demonstrated. The hollow coaxial cable, as the novel sensing platform, is homemade, in which air replaces the traditional dielectric layer. The FPR consists of two highly reflective reflectors, i.e., an artificial cylindrical steel bar and the air-liquid interface. The liquid level is directly transferred to the cavity length of the FPR, and the cavity length can be calculated by the resonant frequency/wavelength of the resonator. The experimental results show that our prototype liquid-level sensor has a sensitivity of 0.51 mm/mm (resonant wavelength change/liquid level) over a dynamic range of around 200 mm. The temperature dependence was also investigated. The novel liquid-level sensor, with high robustness, ease of fabrication, cost effective, wide dynamic range, and high resolution, is expected to have high potential applications in chemical industry, fuel storage, and water-level monitoring.
机译:首次提出并演示了基于空心同轴电缆法布里-珀罗共振器(FPR)的液位传感器,该传感器具有厘米的动态范围和千分尺的分辨率。中空同轴电缆是一种新颖的传感平台,是自制的,其中空气取代了传统的电介质层。 FPR由两个高反射率的反射器组成,即人造圆柱钢条和气液界面。液位直接传递到FPR的腔长,腔长可以通过谐振器的谐振频率/波长来计算。实验结果表明,我们的原型液位传感器在200 mm左右的动态范围内的灵敏度为0.51 mm / mm(共振波长变化/液位)。还研究了温度依赖性。新型液位传感器具有很高的耐用性,易于制造,具有成本效益,宽动态范围和高分辨率,有望在化学工业,燃料存储和水位监测中具有潜在的应用。

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