Chinese Journal of Quantum Electronics ›› 2021, Vol. 38 ›› Issue (3): 281-289.doi: 10.3969/j.issn.1007-5461.2021.03.003
• Spectroscopy • Previous Articles Next Articles
SHEN Xianchun1;2;3, XU Liang1;3∗, SUN Yongfeng1;2;3, HU Yunyou1;2;3, JIN Ling1;3, YANG Weifeng1;3, XU Hangyang1;3, LIU Jianguo1;3, LIU Wenqing1;3
Received:2020-05-28
Revised:2020-06-01
Published:2021-05-28
Online:2021-05-28
CLC Number:
SHEN Xianchun, XU Liang, ∗, SUN Yongfeng, HU Yunyou, JIN Ling, YANG Weifeng, XU Hangyang, LIU Jianguo, LIU Wenqing, . FTIR spectrum recognition algorithm based on variable selection technology[J]. Chinese Journal of Quantum Electronics, 2021, 38(3): 281-289.
| [1] | Sch¨afer K, Heland J, Lister D H, et al. Nonintrusive optical measurements of aircraft engine exhaust emissions and comparison |
| with standard intrusive techniques [J]. Applied Optics, 2000, 39(3): 441-455. | |
| [2] | Xie P H, Liu W Q, Wei Q N. Spectroscopic remote techniques for atmospheric pollution monitoring [J]. Chinese Journal of |
| Quantum Electronics, 2000, 17(5): 385-394. | |
| 谢品华, 刘文清, 魏庆农, 等. 大气环境污染气体的光谱遥感监测技术[J]. 量子电子学报, 2000, 17(5): 385-394. | |
| [3] | Xu L, Gao M G, Liu J G, et al. Multi-gas monitoring by open path FTIR in Yanshan petro-chemical area during Beijing |
| Olympic games [J]. Journal of Atmospheric and Environmental Optics, 2009, 4(5): 376-381. | |
| 徐亮, 高闽光, 刘建国, 等. 北京奥运期间石化工业区多组分污染气体的开放光程FTIR 监测[J]. 大气与环境光学学报, | |
| 20 | 09, 4(5): 376-381. |
| [4] | Ben-David A. Remote detection of biological aerosols at a distance of 3 km with a passive Fourier transform infrared (FTIR) |
| sensor [J]. Optics Express, 2003, 11(5): 418-429. | |
| [5] | Chen S Y, Gao M G, Xu L, et al. Remote sensing of CH4 column concentration in the atmosphere based on direct-sun infrared |
| absorption spectroscopy [J]. Chinese Journal of Quantum Electronics, 2014, 31(1): 18-24. | |
| 程巳阳, 高闽光, 徐亮, 等. 基于直射太阳光红外吸收光谱技术的大气中CH4 柱浓度遥测研究[J]. 量子电子学报, 2014, | |
| 31 | (1): 18-24. |
| [6] | Feng M C, Xu L, Liu W Q, et al. Investigation of detecting biological aerosol by passive Fourier transform infrared spectroscopy |
| technology based on MODTRAN model [J]. Acta Physica Sinica, 2016, 65(1): 014210. | |
| 冯明春, 徐亮, 刘文清, 等. 基于MODTRAN 模型使用被动傅里叶变换红外光谱技术对生物气溶胶的探测研究[J]. 物理 | |
| 学报, 2016, 65(1): 014210. | |
| [7] | Delaney M F, Warren F V, Hallowell J R. Quantitative evaluation of library searching performance [J]. Analytical Chemistry, |
| 19 | 83, 55(12): 1925-1929. |
| [8] | Visser T, Luinge H J, Maas J V D. Neural Networks as a Tool for Identity Confirmation of IR Spectra [C]. Progress in Fourier |
| Transform Spectroscopy, Springer Vienna, 1997: 287-288. | |
| [9] | Fox R C. Computer searching of infrared spectra using peak location and intensity data [J]. Analytical Chemistry, 1976, 48(4): |
| 71 | 7-721. |
| [10] | NydenMR, Pallister J E, Sparks D T, et al. Computer-assisted spectroscopic analysis using orthonormalized reference spectra. |
| Part II: Application to the identification of pure compounds [J]. Applied Spectroscopy, 1987, 41(1): 63-66. | |
| [11] | Ruyken M M A, Visser J A, Smilde A K. Online detection and identification interferents in multivariate predictions of organic |
| gases using FT-IR spectroscopy [J]. Analytical Chemistry, 1995, 67(13): 2170-2179. | |
| [12] | Lavine B K, Nuguru K, Mirjankar N, et al. Pattern recognition assisted infrared library searching [J]. Applied Spectroscopy, |
| 20 | 12, 66(8): 917-925. |
| [13] | Zhou Y, Liu T B, Li J R, et al. Rapid identification of edible oil and swill-cooked dirty oil by using near-infrared spectroscopy |
| and sparse representation classification [J]. Analytical Methods, 2015, 7(6): 2367-2372. | |
| [14] | Bai P, Xie W J, Liu J H. Application of mixture gas spectral recognition with support vector machine [J]. Opto-Electronic |
| Engineering, 2006, 33(8): 37-43. | |
| 白鹏, 谢文俊, 刘君华. 支持向量机在混合气体种类光谱识别中的应用[J]. 光电工程, 2006, 33(8): 37-43. | |
| [15] | Liu F, Wang J D. Using genetic algorithm to identify completely unknown system in FTIR spectra analysis [J]. Journal of |
| Environmental Science and Health: Part A, 2004, 39(6): 1525-1533. | |
| [16] | Tang J, Alelyani S, Liu H. Feature selection for classification: A review [OL]. Documentaci´on Administrativa, 2014. |
| [17] | Tibshirani R. Regression shrinkage and selection via the LASSO: A retrospective [J]. Journal of the Royal Statistical Society: |
| Series B (Statistical Methodology) 2011, 73(3): 273-282. | |
| [18] | Zou H, Hastie T, Tibshirani R. On the“Degrees of freedom”of the Lasso [J]. The Annals of Statistics, 2007, 35(5): 2173-2192. |
| [19] | Xue F, Liu J Q, Li Z F, et al. A novel GCV-based criterion for parametric PSF estimation [C]. 2014 12th International |
| Conference on Signal Processing (ICSP), 2014: 743-746. | |
| [20] | Griffith D W T. Synthetic calibration and quantitative analysis of gas-phase FT-IR spectra [J]. Applied Spectroscopy, 1996, |
| 50 | (1): 59-70. |
| [21] | Shen X C, Xu L, Ye S B, et al. Automatic baseline correction method for the open-path Fourier transform infrared spectra by |
| using simple iterative averaging [J]. Optics Express, 2018, 26(10): A609- A614. | |
| [22] | Shen X C. Study on the Qualitative Method and Application of Passive FTIR Telemetry of Gas [D]. Hefei: University of Science |
| and Technology of China, 2020. | |
| 沈先春. 气体目标FTIR 被动遥测识别方法及应用研究[D]. 合肥: 中国科学技术大学, 2020. |
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