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用于管道中液体的电磁特性真正非接触式测量的差分感应传感系统。

Differential Inductive Sensing System for Truly Contactless Measuring of Liquids' Electromagnetic Properties in Tubing.

机构信息

Department of Sensors and Measurement Technology, Institute of Electrical Engineering and Measurement Technology, Leibniz University Hannover, 30167 Hannover, Germany.

出版信息

Sensors (Basel). 2021 Aug 17;21(16):5535. doi: 10.3390/s21165535.

Abstract

Certain applications require a contactless measurement to eliminate the risk of sensor-induced sample contamination. Examples can be found in chemical process control, biotechnology or medical technology. For instance, in critically ill patients requiring renal replacement therapy, continuous in-line monitoring of blood conductivity as a measure for sodium should be considered. A differential inductive sensing system based on a differential transformer using a specific flow chamber has already proven suitable for this application. However, since the blood in renal replacement therapy is carried in plastic tubing, a direct measurement through the tubing offers a contactless method. Therefore, in this work we present a differential transformer for measuring directly through electrically non-conductive tubing by winding the tube around the ferrite core of the transformer. Here, the dependence of the winding type and the number of turns of the tubing on the sensitivity has been analyzed by using a mathematical model, simulations and experimental validation. A maximum sensitivity of 364.9 mV/mol/L is measured for radial winding around the core. A longitudinal winding turns out to be less effective with 92.8 mV/mol/L. However, the findings prove the ability to use the differential transformer as a truly contactless sensing system.

摘要

某些应用需要非接触式测量以消除传感器引起的样品污染风险。例如,在需要肾脏替代治疗的重病患者中,连续在线监测血液电导率作为钠离子的测量值就很有必要。一种基于使用特定流室的差动变压器的差动感应传感系统已经被证明适用于这种应用。然而,由于在肾脏替代治疗中血液是在塑料管中输送的,因此通过塑料管直接进行测量提供了一种非接触式方法。因此,在这项工作中,我们提出了一种通过将管子缠绕在变压器的铁氧体芯上来直接测量通过不导电的管子的差动变压器。在这里,通过使用数学模型、模拟和实验验证分析了管子的缠绕类型和匝数对灵敏度的影响。在围绕核心的径向缠绕中测量到 364.9 mV/mol/L 的最大灵敏度。纵向缠绕的效果较差,为 92.8 mV/mol/L。然而,这些发现证明了使用差动变压器作为真正的非接触式传感系统的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee04/8402242/3b6c53188298/sensors-21-05535-g001.jpg

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