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首页> 外文期刊>Journal of Nanoelectronics and Optoelectronics >Optimization of Harmonic Detection System for Tunable Diode Laser Absorption Spectroscopy Based on Mathematical Algorithm
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Optimization of Harmonic Detection System for Tunable Diode Laser Absorption Spectroscopy Based on Mathematical Algorithm

机译:基于数学算法的可调谐二极管激光吸收光谱的谐波检测系统优化

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摘要

Traditional gas detection technology has a certain degree of defects in all aspects, and it has not been able to adapt to the rapid development trend. Tunable diode laser absorption spectroscopy (TDLAS) technology has some good performance and is gradually being used in various industries.First, a gas detection instrument is designed. Then, based on subsequent data processing techniques, a wavelet transform algorithm is proposed, and the noise removal and baseline correction functions of the detection system are implemented. The results show that the proposed method has goodremoval effect on the inherent noise of the system and high efficiency. During the selection of the absorption line, the selected line of some gases cannot avoid the interference of adjacent peaks. Therefore, a mathematical analysis method of differential fold back algorithm is proposed. Theabsorption peak shape is squeezed by the method of adjacent phase subtraction and displacement superposition. The problem is solved well, and the accuracy of concentration measurement of some gases is effectively improved.
机译:传统的气体检测技术在各方面都有一定程度的缺陷,并且无法适应快速发展趋势。可调谐二极管激光吸收光谱(TDLAS)技术具有一些良好的性能,并逐渐用于各种行业。首先,设计了一种气体检测仪。然后,基于随后的数据处理技术,提出了小波变换算法,并且实现了检测系统的噪声去除和基线校正功能。结果表明,该方法具有对系统固有噪声和高效率的效果。在选择吸收线期间,一些气体的选定线不能避免相邻峰的干扰。因此,提出了一种差分折叠反算法的数学分析方法。通过相邻相减法和位移叠加的方法挤压舌头峰值形状。问题良好,一些气体浓度测量的准确性得到了有效改善。

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