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A Passive Radio-Frequency Identification (RFID) Gas Sensor With Self-Correction Against Fluctuations of Ambient Temperature

机译:具有针对环境温度波动的自校正功能的无源射频识别(RFID)气体传感器

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摘要

Uncontrolled fluctuations of ambient temperature in the field typically greatly reduce accuracy of gas sensors. In this study, we developed an approach for the self-correction against fluctuations of ambient temperature of individual gas and vapor sensors. The main innovation of our work is in the temperature correction which is accomplished without the need for a separate uncoated reference sensor or a separate temperature sensor. Our sensors are resonant inductor-capacitor-resistor (LCR) transducers coated with sensing materials and operated as multivariable passive (battery-free) radio-frequency identification (RFID) sensors. Using our developed approach, we performed quantitation of an exemplary vapor over the temperature range from 25 to 40 °C. This technical solution will be attractive in numerous applications where temperature stabilization of a gas sensor or addition of auxiliary temperature or uncoated reference sensors is prohibitive.
机译:现场环境温度的不受控制的波动通常会大大降低气体传感器的精度。在这项研究中,我们开发了一种针对各个气体和蒸汽传感器的环境温度波动进行自我校正的方法。我们工作的主要创新在于温度校正,无需单独的未镀膜参考传感器或单独的温度传感器即可完成。我们的传感器是涂有传感材料的谐振电感器-电容器-电阻器(LCR)传感器,并用作多变量无源(无电池)射频识别(RFID)传感器。使用我们开发的方法,我们在25至40°C的温度范围内对示例性蒸气进行了定量。该技术解决方案在气体传感器的温度稳定化或禁止添加辅助温度传感器或无涂层参考传感器的众多应用中具有吸引力。

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