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Improving the method of compensation of output signal temperature drift in optical methane concentration measurer

机译:在光学甲烷浓度测量器中提高输出信号温度漂移的补偿方法

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The method of compensation of output signal temperature drift in an optical methane concentration measurer has been improved, which allowed to expand the operating temperature range to +55°C preserving regulated metrological characteristics. In the proposed method, in contrast to the existing ones, compensation is made for the temperature-caused change of the constant component of the output signal not by the static polynomial, but by the functional dependency of LED optical radiation intensity change on voltage drop change in it. The improved method of compensation in the measurer using hardware and software components has been implemented, which made it possible to evaluate metrological characteristics of the measurer and its efficiency. During the experimental research of the methane concentration measurer in question, it has been obtained the value of the additional absolute measurement error of methane concentration, which does not exceed the regulated magnitude of the basic error (±0.20vol%), which fully meets the requirements for these measurers under conditions of coal mine atmosphere.
机译:已经提高了在光学甲烷浓度测量器中进行输出信号温度漂移的补偿方法,其允许将工作温度范围扩展至+ 55℃保持调节的计量特性。在该方法中,与现有的方法相比,补偿是为了通过静态多项式的输出信号的恒定分量的温度导致变化,但通过LED光辐射强度变化的功能依赖性对电压降的功能依赖性在里面。已经实施了使用硬件和软件组件的测量器中补偿的改进方法,这使得可以评估测量器的计量特性及其效率。在所讨论的甲烷浓度测量仪的实验研究期间,已经获得了甲烷浓度的附加绝对测量误差的值,其不超过基本误差的调节幅度(±0.20vol%),这完全满足了在煤矿气氛条件下对这些测量仪的要求。

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