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

激光器 谐波 波长 材料科学 光学 调制(音乐) 可调谐激光吸收光谱技术 可调谐激光器 校准 调制指数 二极管 频率调制 调幅 光电子学 物理 计算机科学 脉冲宽度调制 声学 电信 无线电频率 电压 量子力学
作者
Kang Sun,Chao Xing,Ritobrata Sur,Christopher S. Goldenstein,Jay B. Jeffries,Ronald K. Hanson
出处
期刊:Measurement Science and Technology [IOP Publishing]
卷期号:24 (12): 125203-125203 被引量:187
标识
DOI:10.1088/0957-0233/24/12/125203
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 (fm). 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-nfm (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 H2O dilute in air (1 atm, 296 K, near 1392 nm). WMS-nfm 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.
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