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Mobile Sensor System AGaMon for Breath Control: Thermo-cyclic Operation and Numerical Signal Analysis of Ternary Gas Mixtures

机译:移动传感器系统Agamon用于呼吸控制:三元气体混合物的热循环操作和数值信号分析

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An innovative mobile sensor system for breath control in the exhaled air is introduced. In this paper, the application of alcohol control in the exhaled air is considered. This sensor system operates semiconducting gas sensor elements with respect to the application in a thermo-cyclic operation mode. This operation mode leads to so-called conductance-over-time-profiles (CTPs), which are fingerprints of the gas mixture under consideration and can be used for substance identification and concentration determination. Especially for the alcohol control in the exhaled air, ethanol is the leading gas component to be investigated. But, there are also other interfering gas components in the exhaled air, like H2 and acetone, which may influence the measurement results. Therefore, a ternary ethanol-H2-acetone gas mixture was investigated. The establishing of the mathematical calibration model and the data analysis was performed with a newly developed innovative calibration and evaluation procedure called ProSens 3.0. The analysis of ternary ethanol-H2-acetone gas samples with ProSens 3.0 shows a very good substance identification performance and a very good concentration determination of the leading ethanol component. The relative analysis errors for the leading component ethanol were in all considered samples less than 9%.
机译:介绍了一种用于呼出空气中的呼吸控制的创新的移动传感器系统。本文认为,考虑了醇控制在呼出空气中的应用。该传感器系统在热循环操作模式中相对于应用操作半导体气体传感器元件。该操作模式导致所谓的电导过时 - 曲线(CTP),其是所考虑的气体混合物的指纹,可用于物质鉴定和浓度测定。特别是对于呼出空气中的醇控制,乙醇是要研究的领先气体组分。但是,呼出空气中还存在其他干扰气体组分,如H2和丙酮,这可能影响测量结果。因此,研究了三元乙醇-H2-丙酮气体混合物。使用新开发的创新校准和评估程序进行了数学校准模型和数据分析,称为Prosens 3.0。三元乙醇-H2-丙酮气体样品具有漂亮3.0的分析显示出非常好的物质鉴定性能和非常好的乙醇组分的浓度测定。领先组分乙醇的相对分析误差在所有认为样品中少于9%。

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