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Performance improvement of multi-point photoacoustic spectroscopy gas detection system by power compensation technique and fixed wavelength technique

机译:功率补偿技术和固定波长技术多点光声光谱气体检测系统的性能改进

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Previous studies on the use of photoacoustic spectroscopy (PAS) techniques in the measurement of CH4 concentrations have been mainly limited to a single point measurement using only one PAS cell. A single point measurement will not satisfy the detection need, for instance in a natural gas transmission pipeline or an underground coal mine, gas explosion may occur at any point of the pipe or tunnel. Therefore, simultaneous multi-point measurements are required to obtain the gas distribution profile along the tunnel. Here we proposed and demonstrated a multi-point photoacoustic spectroscopy gas detection system based on the power compensation technique and fixed wavelength technique for CH_4 detection. In the multi-point photoacoustic spectroscopy gas detection system, the gas absorption of the first PAS cell would make the measurement of the second PAS cell inaccurate. Therefore, we proposed a power compensation technique to compensate the absorbed laser power. In addition, a simple fixed wavelength technique was used in multi-point photoacoustic spectroscopy gas detection system to improve the signal to noise ratio (SNR). Finally, the experiment results showed that the two PAS cells achieved the minimum detection limit of 7.72 ppmv and 5.14 ppmv, respectively.
机译:以前关于使用光声光谱(PAS)技术在测量CH4浓度中的研究主要限于使用一个PAS细胞的单点测量。单点测量不会满足检测需要,例如在天然气传输管道或地下煤矿中,在管道或隧道的任何点处可能发生气体爆炸。因此,需要同时多点测量来沿着隧道获得气体分布曲线。在这里,我们提出并证明了基于CH_4检测的功率补偿技术和固定波长技术的多点光声光谱气体检测系统。在多点光声光谱气体检测系统中,第一PAS细胞的气体吸收将使第二个PAS细胞的测量不准确。因此,我们提出了一种功率补偿技术来补偿吸收的激光功率。另外,在多点光声光谱气体检测系统中使用简单的固定波长技术,以改善信噪比(SNR)。最后,实验结果表明,两个PAS细胞分别达到了7.72ppmV和5.14ppmv的最小检测限。

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