首页> 外文会议>World Congress on Intelligent Control and Automation;WCICA 2010 >Modulation Coefficient Analysis in Optical Fiber Methane Gas Sensor Based on Wavelength Modulation Spectroscopy
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Modulation Coefficient Analysis in Optical Fiber Methane Gas Sensor Based on Wavelength Modulation Spectroscopy

机译:基于波长调制光谱的光纤甲烷气体传感器调制系数分析

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The detection sensitivity of methane trace-gas concentration using optical fiber gas sensor based on tunable diode laser absorption spectroscopy (TDLAS) and wavelength modulation spectroscopy (WMS) is very high, the absorption line is detected using a laser diode wavelength-sweep technique, and Fourier series is used to analysis WMS signal. The ratio of the second harmonic peak and the first harmonic baseline as output is used to eliminate the influence of optical intensity fluctuations. The fluctuations of temperature in the gas cell cause absorption coefficient and modulation coefficient to change, a simple piece of equipment with temperature acquisition devices is developed for measuring methane gas concentration. Under the different modulation amplitudes, the deviations of system output caused by temperature fluctuations are different, and the optimal modulation coefficient is chosen to suppress the influence of temperature fluctuations.
机译:使用基于可调二极管激光吸收光谱(TDLAS)和波长调制光谱(WMS)的光纤气体传感器对甲烷痕量气体浓度的检测灵敏度非常高,使用激光二极管波长扫描技术检测吸收线,并且傅里叶级数用于分析WMS信号。使用第二谐波峰值与第一谐波基线之比作为输出,以消除光强度波动的影响。气室中温度的波动会导致吸收系数和调制系数发生变化,因此开发了一种带有温度采集装置的简单设备来测量甲烷气体浓度。在不同的调制幅度下,温度波动引起的系统输出偏差是不同的,选择最佳的调制系数以抑制温度波动的影响。

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