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A Linear-Quadratic Model for the Quantification of a Mixture of Two Diluted Gases with a Single Metal Oxide Sensor

机译:用单个金属氧化物传感器定量两种稀释气体混合物的线性二次模型

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摘要

The aim of our work is to quantify two gases (acetone and ethanol) diluted in an air buffer using only a single metal oxide (MOX) sensor. We took advantage of the low selectivity of the MOX sensor, exploiting a dual-temperature mode. Working at two temperatures of the MOX sensitive layer allowed us to obtain diversity in the measures. Two virtual sensors were created to characterize our gas mixture. We presented a linear-quadratic mixture sensing model which was closer to the experimental data. To validate this model and the experimental protocol, we inverted the system of quadratic equations to quantify a mixture of the two gases. The linear-quadratic model was compared to the bilinear model proposed in the literature. We presented an experimental evaluation on mixtures made of a few ppm of acetone and ethanol, and we obtained a precision close to the ppm. This is an important step towards medical applications, particularly in terms of diabetes, to deliver a non-invasive measure with a low-cost device.
机译:我们的工作目的是仅使用单个金属氧化物(MOX)传感器对在空气缓冲器中稀释的两种气体(丙酮和乙醇)进行定量。我们利用了双温度模式,利用了MOX传感器的低选择性。在MOX敏感层的两个温度下工作使我们能够获得不同的措施。创建了两个虚拟传感器来表征我们的混合气体。我们提出了一种线性二次混合感测模型,该模型更接近于实验数据。为了验证该模型和实验方案,我们颠倒了二次方程组,以量化两种气体的混合物。将线性二次模型与文献中提出的双线性模型进行了比较。我们对由几ppm的丙酮和乙醇制成的混合物进行了实验评估,并获得了接近ppm的精度。这是迈向医疗应用(尤其是在糖尿病方面)的重要一步,以通过低成本设备提供非侵入性措施。

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