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The study of the concentration of carbon monoxide measured based on 1.58um tunable semiconductor laser

机译:基于1.58um可调半导体激光器测量一氧化碳浓度的研究

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By use of 1.58um tunable semiconductor laser, in which its wavelength is nicely a window of communication in long wavelength band of the fiber, the measurement optical paths can well be integrated in fiber system with fiber and passive component in the fiber communication and is put to industry field. Moreover, the 1.58um spectrum line is an absorption peak of carbon monoxide and around the spectrum line, the background gas in atmosphere has a good transmission window. It is very well to measure carbon monoxide concentration. Through measuring peaks of the second harmonic and fourth harmonic of absorption spectrum lines of carbon monoxide with TDLAS absorption spectroscopy technique, the carbon monoxide concentration can accurately be calculated by composition algebra of the second and the fourth harmonic intensities. One of the advantages of the concentration measured by the high order harmonic intensity is that it can overcome the disturbance of the low order harmonics, especially, the disturbance of laser modulation current and one harmonic. The another is that the concentration measurement has nothing to do with the laser modulation ratio and laser parameters so that it overcomes the affect of changes of the modulation intensity and laser current in measurement process and the concentration express only have relations with characteristic parameters of temperature and pressure in the measurement gas chamber and measurement intensities of the second and the fourth harmonics. Moreover, the relative measurement error of carbon monoxide concentration has nothing to do with the frequency change caused by the current of laser diode modulation. The results showed that the relative intensities of the second harmonic and fourth harmonics of the specific absorption spectra line are used to calculate gas concentrations is efficient, fast, real-time and the method is high precision calculation of the concentration of carbon monoxide gas.
机译:通过使用1.58um可调半导体激光器,其波长恰好是光纤长波长带中的通信窗口,因此可以将测量光路很好地集成到光纤系统中,并在光纤通信中将光纤和无源组件集成在一起进入工业领域。此外,1.58um谱线是一氧化碳的吸收峰,在谱线周围,大气中的背景气体具有良好的透射窗口。测量一氧化碳浓度非常好。通过使用TDLAS吸收光谱技术测量一氧化碳的吸收光谱线的二次谐波和三次谐波的峰值,可以通过二次谐波强度和三次谐波强度的成分代数准确地计算一氧化碳浓度。用高次谐波强度测量浓度的优点之一是可以克服低次谐波的干扰,特别是克服了激光调制电流和一个谐波的干扰。另一个是浓度测量与激光调制比和激光参数无关,从而克服了测量过程中调制强度和激光电流变化的影响,浓度表示仅与温度和温度的特征参数有关。测量气室中的压力以及第二和第四谐波的测量强度。而且,一氧化碳浓度的相对测量误差与由激光二极管调制的电流引起的频率变化无关。结果表明,利用特定吸收谱线的二次谐波和第四谐波的相对强度,可以高效,快速,实时地计算出一氧化碳气体的浓度,是一种高精度的计算方法。

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