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Optical Methane Sensor Based on a Fiber Loop at 1665 nm

机译:基于1665 nm光纤环的光学甲烷传感器

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A fiber loop method for methane sensing using a 50 mm gas gap at 1665 nm is introduced for the first time, to our knowledge. A pulse of light is coupled into the loop and goes through the gas chamber four times. The absorption loss and the methane concentration are obtained by figuring out the decreasing ratio of the output pulse train with a curve fitting process. The advantage of this method is its insensitivity to power fluctuations of the laser. The best split ratio of the coupler for the fiber loop method was put forward and investigated, and the absorption spectrum, including the wavelengths and the strengths of the absorption lines of methane around 1665 nm, were measured with a Super-Luminescent Diode. This system was used to measure two gas samples and the errors are found to be less than 3%.
机译:据我们所知,首次引入了使用1665 nm处的50 mm气隙进行甲烷传感的光纤环路方法。光脉冲耦合到环路中,并通过气室四次。吸收损失和甲烷浓度是通过曲线拟合法求出输出脉冲序列的减少比例而得到的。这种方法的优点是它对激光器的功率波动不敏感。提出并研究了光纤环法耦合器的最佳分光比,并用超发光二极管测量了吸收光谱,包括1665 nm附近甲烷的吸收线的波长和强度。该系统用于测量两个气体样品,发现误差小于3%。

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