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Analysis of calibration-free wavelength-scanned wavelength modulation spectroscopy for practical gas sensing using tunable diode lasers

机译:使用可调谐二极管激光器进行实际气体传感的免校准波长扫描波长调制光谱分析

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摘要

A novel strategy has been developed for analysis of wavelength-scanned, wavelength modulation spectroscopy (WMS) with tunable diode lasers (TDLs). The method simulates WMS signals to compare with measurements to determine gas properties (e.g., temperature, pressure and concentration of the absorbing species). Injection-current-tuned TDLs have simultaneous wavelength and intensity variation, which severely complicates the Fourier expansion of the simulated WMS signal into harmonics of the modulation frequency (f_m). The new method differs from previous WMS analysis strategies in two significant ways: (1) the measured laser intensity is used to simulate the transmitted laser intensity and (2) digital lock-in and low-pass filter software is used to expand both simulated and measured transmitted laser intensities into harmonics of the modulation frequency, WMS-nf_m (n = 1, 2, 3,...), avoiding the need for an analytic model of intensity modulation or Fourier expansion of the simulated WMS harmonics. This analysis scheme is valid at any optical depth, modulation index, and at all values of scanned-laser wavelength. The method is demonstrated and validated with WMS of H_2O dilute in air (1 atm, 296 K, near 1392 nm). WMS-nf_m harmonics for n = 1 to 6 are extracted and the simulation and measurements are found in good agreement for the entire WMS lineshape. The use of 1f-normalization strategies to realize calibration-free wavelength-scanned WMS is also discussed.
机译:已经开发出一种新颖的策略,用于使用可调二极管激光器(TDL)分析波长扫描的波长调制光谱(WMS)。该方法模拟WMS信号以与测量结果进行比较以确定气体性质(例如温度,压力和吸收物质的浓度)。注入电流调谐的TDL具有同时的波长和强度变化,这使模拟WMS信号的傅立叶展开严重复杂化为调制频率(f_m)的谐波。新方法与以前的WMS分析策略有两个主要不同:(1)使用测量的激光强度来模拟传输的激光强度,(2)使用数字锁定和低通滤波器软件来扩展模拟和仿真技术。可以将传输的激光强度测量为调制频率WMS-nf_m(n = 1,2,3,...)的谐波,从而无需模拟WMS谐波的强度调制或傅立叶展开解析模型。该分析方案在任何光学深度,调制指数以及扫描激光波长的所有值下均有效。在空气中(1 atm,296 K,接近1392 nm)稀释H_2O的WMS对该方法进行了验证和验证。提取了n = 1到6的WMS-nf_m谐波,发现整个WMS线形的仿真和测量结果吻合良好。还讨论了使用1f归一化策略来实现免校准的波长扫描WMS。

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