Full-range CO 2 detection using dual-path WMS–DAS and multi-regime adaptive fusion

Tunable diode laser absorption spectroscopy (TDLAS) offers high sensitivity, selectivity, robustness, and real-time detection. However, most TDLAS-based sensors have a limited dynamic range, typically below 10 4 . Here, we propose a TDLAS-based method for full-dynamic-range CO 2 detection. A dual-path absorption cell is combined with a wavelength modulation spectroscopy–direct absorption spectroscopy (WMS–DAS) measurement strategy to realize full-range detection. A dual-logistic adaptive weighting algorithm is developed to fuse adjacent channels and suppress range-boundary discontinuities, enabling smooth and continuous transitions across adjacent detection regimes without hard switching. Experiments demonstrate that the proposed configuration and detection scheme enable CO 2 measurements from sub-ppm levels to 100% concentration, with a dynamic range of 3.3 × 10 6 , while achieving a 1σ detection limit of 0.3 ppm at an integration time of 72 s. The proposed method shows strong potential for applications ranging from trace-level environmental monitoring to industrial gas purity analysis.

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Publication Details

Journal
Optics Letters
Published
2026-10-05
DOI
https://doi.org/10.1364/ol.616154
Primary Topic
Spectroscopy and Laser Applications
Type
article
Field-Weighted Citation Impact
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Full-range CO 2 detection using dual-path WMS–DAS and multi-regime adaptive fusion

Guishi Wang, Kun Liu, Chuan Li, Ruifeng Wang et al.
Optics Letters
Spectroscopy and Laser Applications
article

Full-range CO 2 detection using dual-path WMS–DAS and multi-regime adaptive fusion

Guishi Wang, Kun Liu, Chuan Li, Ruifeng Wang, Xiaoming Gao, Xuezhe Xu, Jie Wang
article en

Abstract

Tunable diode laser absorption spectroscopy (TDLAS) offers high sensitivity, selectivity, robustness, and real-time detection. However, most TDLAS-based sensors have a limited dynamic range, typically below 10 4 . Here, we propose a TDLAS-based method for full-dynamic-range CO 2 detection. A dual-path absorption cell is combined with a wavelength modulation spectroscopy–direct absorption spectroscopy (WMS–DAS) measurement strategy to realize full-range detection. A dual-logistic adaptive weighting algorithm is developed to fuse adjacent channels and suppress range-boundary discontinuities, enabling smooth and continuous transitions across adjacent detection regimes without hard switching. Experiments demonstrate that the proposed configuration and detection scheme enable CO 2 measurements from sub-ppm levels to 100% concentration, with a dynamic range of 3.3 × 10 6 , while achieving a 1σ detection limit of 0.3 ppm at an integration time of 72 s. The proposed method shows strong potential for applications ranging from trace-level environmental monitoring to industrial gas purity analysis.

Optics LettersVol. 51(20)
Chinese Academy of Sciences (CN), Anhui East China Institute of Optoelectronic Technology (China) (CN)
Openalex Percentile: Top 25%
Spectroscopy and Laser Applications
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Full-range CO 2 detection using dual-path WMS–DAS and multi-regime adaptive fusion — Guishi Wang, Kun Liu, et al. · Optics Letters (2026) | TGRS Research Map | TGRS