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Uncertainty Estimation in Simultaneous Measurements of Levels and Permittivities of Liquids Using TDR Technique

机译:使用TDR技术同时测量液位和介电常数的不确定度估算

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摘要

Time-domain reflectometry (TDR) based on instruments are commonly used for several monitoring methods, particularly in soil moisture and volumetric water-content evaluation. Furthermore, significant advantages of TDR methodology, mostly related to the possible determination in real-time and to a nondestructive approach of the spatial location and nature of various objects, make this technique an appealing candidate for a variety of environmental and industrial applications. In this paper, we show that the suitable combination of TDR-detecting functionalities can lead to a joint quantitative and qualitative monitoring method for liquid-control purposes, so that, in one shot, the analysis of TDR data allow the measurement of liquid levels, the determination of multiple interfaces in layered media, as well as the evaluation of dielectric properties, thus opening challenging perspectives for several monitoring applications, particularly in fluid-processing-related industry. For such purposes, a detailed analysis of the uncertainty of the proposed measurement method is mandatory; hence, a metrological characterization of the method is carried out, demonstrating that the presented technique is definitely valid for simultaneously measuring levels and dielectric constants of liquids, with uncertainties under 2%. Results obtained for different liquid samples validate the approach on a wide range of dielectric materials and demonstrate the robustness and reliability of the proposed TDR technique.
机译:基于仪器的时域反射仪(TDR)通常用于多种监测方法,尤其是在土壤湿度和体积含水量评估中。此外,TDR方法的显着优势(主要与实时确定可能的位置以及各种物体的空间位置和性质的非破坏性方法有关)使该技术成为各种环境和工业应用的理想之选。在本文中,我们证明了将TDR检测功能进行适当的组合可以为液体控制目的提供一种联合的定量和定性监测方法,因此,一次分析TDR数据就可以测量液位,确定分层介质中的多个界面以及评估介电性能,从而为几种监控应用(尤其是与流体处理相关的行业)打开了具有挑战性的前景。为此,必须对提议的测量方法的不确定性进行详细分析;因此,对该方法进行了计量学表征,表明所提出的技术对于同时测量液体的液位和介电常数绝对有效,不确定度低于2%。从不同液体样品获得的结果验证了该方法在多种介电材料上的有效性,并证明了所提出的TDR技术的鲁棒性和可靠性。

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