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Highly sensitive broadband differential infrared photoacoustic spectroscopy with wavelet denoising algorithm for trace gas detection

机译:具有小波去噪算法的高度敏感性宽带差分光声光谱,用于跟踪气体检测

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Enhancement of trace gas detectability using photoacoustic spectroscopy requires the effective suppression of strong background noise for practical applications. An upgraded infrared broadband trace gas detection configuration was investigated based on a Fourier transform infrared (FTIR) spectrometer equipped with specially designed T-resonators and simultaneous differential optical and photoacoustic measurement capabilities. By using acetylene and local air as appropriate samples, the detectivity of the differential photoacoustic mode was demonstrated to be far better than the pure optical approach both theoretically and experimentally, due to the effectiveness of light-correlated coherent noise suppression of non-intrinsic optical baseline signals. The wavelet domain denoising algorithm with the optimized parameters was introduced in detail to greatly improve the signal-to-noise ratio by denoising the incoherent ambient interference with respect to the differential photoacoustic measurement. The results showed enhancement of sensitivity to acetylene from 5 ppmv (original differential mode) to 806 ppbv, a fivefold improvement. With the suppression of background noise accomplished by the optimized wavelet domain denoising algorithm, the broadband differential photoacoustic trace gas detection was shown to be an effective approach for trace gas detection.
机译:利用光声光谱增强痕量气体可检测性需要有效地抑制实际应用的强大背景噪声。研究了一种升级的红外宽带轨迹检测配置,基于配备有专门设计的T-谐振器和同时差分光学和光声测量功能的傅里叶变换红外(FTIR)光谱仪进行了研究。通过使用乙炔和局部空气作为适当的样本,由于非本质光学基线的光相关相干噪声抑制的有效性,差分光声模式的检测率远远远远超过理论上和实验的纯光学方法。信号。详细介绍了具有优化参数的小波域去噪算法,以通过对差分光声测量的不连贯的环境干扰来大大提高信噪比。结果表明,从5个PPMV(原始差动模式)至806ppbv,提高乙炔的敏感性提高,五倍改善。通过抑制由优化小波域去噪算法实现的背景噪声,宽带差分光声轨道气体检测显示为痕量气体检测的有效方法。

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