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Simulation of characteristics of optical gas sensors based on diode optopairs operating in the mid-IR spectral range

机译:基于在中红外光谱范围内工作的二极管光电对的光学气体传感器的特性仿真

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摘要

An analytic model is proposed for an optical gas sensor based on diode optopairs, which takes into account the line spectral structure of gases being analyzed, as well as peculiarities of spectral characteristics of immersion-type light-emitting diodes and photodiodes operating in the mid-IR spectral range. The model makes it possible to calculate the transfer characteristic of the sensor and to estimate the measurement error for gas analyzers operating on the basis of these sensors. The experiments demonstrate bright prospects of application of sensors based on immersion-type diode optopairs in small-size gas analyzers; the expected values of the threshold sensitivity of a CO2 sensor at a level of 10 ppm and the absolute error of measurements below 0.1% (reduced error is 1%) in a range of up to 10 vol % at a speed of up to 10 counts per second exceed the parameters of available portable CO2 gas analyzers. The validity of the model is confirmed by conformity between the calculated data and the experimental results obtained on a prototype of a CO2 diode sensor.
机译:提出了一种基于二极管光电对的光学气体传感器的分析模型,该模型考虑了所分析气体的线光谱结构,以及在中部工作的浸没式发光二极管和光电二极管的光谱特性的特点。红外光谱范围。该模型可以计算传感器的传递特性,并估计基于这些传感器运行的气体分析仪的测量误差。实验证明,基于浸没式二极管光电对的传感器在小型气体分析仪中的应用前景广阔。 CO2传感器的阈值灵敏度的期望值在10 ppm的水平和测量的绝对误差低于0.1%(减小的误差为1%),在最高10 vol%的范围内,速度最高为10个计数每秒超过可用的便携式CO​​2气体分析仪的参数。该模型的有效性通过计算数据与在CO2二极管传感器原型上获得的实验结果之间的一致性来确认。

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