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Design and modeling of non-linear infrared transducer for measuring methane using cross-correlation method

机译:互相关法测量甲烷的非线性红外传感器的设计与建模

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摘要

Aiming to solve the drawbacks of traditional methane transducers such as narrow detecting range, poor stability, long response time, a novel methane transducer based on the principle of non-dispersive infrared absorption (NDIR) is designed. The operating principle of the NDIR and the components of the infrared transducer for measuring methane are introduced in this paper. In addition, the method of detecting the weak signal from Infrared detector based on cross correlation is proposed. The algorithms for calculation, calibration and compensation of the target methane concentration are also presented by applying the non-linear curve fitting to data point methodology for the Infrared methane transducer. The experimental results show that the accuracy, repeatability and stability of the concentration measured by the infrared methane transducer satisfy the requirements of coal mine safety management.
机译:为了解决传统甲烷传感器的检测范围窄,稳定性差,响应时间长等缺点,设计了一种基于非分散红外吸收原理的新型甲烷传感器。本文介绍了NDIR的工作原理以及用于测量甲烷的红外传感器的组件。此外,提出了一种基于互相关的红外探测器微弱信号检测方法。通过将非线性曲线拟合应用于红外甲烷传感器的数据点方法,还提出了用于目标甲烷浓度的计算,校准和补偿的算法。实验结果表明,红外甲烷传感器测量浓度的准确性,可重复性和稳定性满足煤矿安全管理的要求。

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