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Design of an optical methane concentration meter, invariant to temperature changes of mine atmosphere

机译:甲烷甲烷光学浓度计的设计,不会随矿层温度的变化而变化

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The authors propose the method of compensating for temperature drift of the output signal of an optical methane concentration meter for mine atmosphere conditions. This method, unlike the existing ones, uses only a voltage drop signal on the light emitting diode for hardware compensation, while software compensation is done after its changes. That makes it possible to abandon completely the hardware differential circuit design of the meter and an additional temperature sensor. Experimental prototypes of the methane concentration meter based on the proposed method have been designed and produced. While conducting studies of the prototypes, the authors have established the value of additional error of methane concentration measurement with temperature changes in the range from +5 to +35°C, which is not more than ±0.1
机译:作者提出了一种针对矿井大气条件补偿光学甲烷浓度计输出信号温度漂移的方法。与现有方法不同,此方法仅将发光二极管上的电压降信号用于硬件补偿,而软件补偿则在更改后进行。这样就可以完全放弃仪表的硬件差分电路设计和附加的温度传感器。设计并生产了基于所提出方法的甲烷浓度计的实验原型。在进行原型研究时,作者确定了温度在+5至+ 35°C(不超过±0.1)范围内的甲烷浓度测量的附加误差值。

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