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Research on Methane Gas Sensor with Spectrum Absorption and Signal Processing Method

机译:具有光谱吸收和信号处理方法的甲烷气体传感器的研究

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Based on the mechanism of gas absorption to light varying with concentration and the analysis of the infrared absorption spectrum of methane, the mathematical model of gas concentration harmonic measurement is built up and a measurement system was developed. This system, consisting of an illumination source LD in 1654 nm waveband, and a PbS preamplified photodetector with wavelength response range 1.0 mum -2.9 mum . Light source modulation harmonic measurement is adopted, making use of a frequency-selection amplifier to carry out second-harmonic detection from the transmitting signals. The ratio of the first harmonic and second harmonic signal can be used for eliminating the interference owing to light power changing. The sensitivity, accuracy and stability can meet practical demands for the detection of methane.
机译:基于气体吸收光随浓度变化的机理和甲烷的红外吸收光谱分析,建立了气体浓度谐波测量的数学模型,并建立了测量系统。该系统由1654 nm波段的照明光源LD和波长响应范围为1.0 mum -2.9 mm的PbS预放大光电探测器组成。采用光源调制谐波测量,利用选频放大器对发射信号进行二次谐波检测。一次谐波信号和二次谐波信号的比率可以用于消除由于光功率变化而引起的干扰。灵敏度,准确性和稳定性可以满足甲烷检测的实际需求。

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