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Wide absorption spectrum measuring methods by DFB-LDs in water vapor detection system

机译:DFB-LD在水蒸气检测系统中的宽吸收光谱测量方法

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Two measuring methods of the wide absorption spectrum by distributed feedback laser diodes (DFB-LDs) are presented in detecting the water vapor absorption line. One is the subsection scanning method, and it takes advantage of the wide spectrum tuning range by the temperature modulation and fast spectrum tuning speed by current modulation. Specifically, this method is realized by dividing a target spectral region into several sections which correspond to the specific temperature of DFB-LD, scanning every section by current modulation for hundreds times, and averaging the data to raise the signal to noise ratio (SNR), then combining all sections to get the whole spectrum. An accuracy of 10 ppmv had been obtained in the measurement of water vapor with a 10-cm path length by this method. Another is data fitting method, based on the absorption line-shape function; the absorption line can be described by fitting with partial measured data. The fitting absorption line was fitted well with the measured data, and the square of correlation coefficient (R-square) was no less than 0.99.
机译:提出了两种利用分布式反馈激光二极管(DFB-LD)测量宽吸收光谱的方法来检测水蒸气吸收线。一种是分段扫描方法,它利用了温度调制的宽频谱调整范围和电流调制的快速频谱调整速度。具体地,通过将​​目标光谱区域划分为与DFB-LD的特定温度相对应的几个部分,通过电流调制扫描每个部分数百次,并对数据求平均以提高信噪比(SNR),来实现该方法。 ,然后合并所有部分以获取整个频谱。用这种方法在光程为10厘米的水蒸气的测量中已获得10 ppmv的精度。另一种是基于吸收线形函数的数据拟合方法。吸收线可以通过拟合部分测量数据来描述。拟合吸收线与测量数据拟合得很好,相关系数的平方(R-平方)不小于0.99。

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