Optical Technique, Volume. 49, Issue 4, 424(2023)
Reconstruction algorithm for Flame tomography based on chemiluminescence
[1] [1] Floyd J. Computed tomography of chemiluminescence: A 3D time resolved sensor for turbulent combustion[D]. Imperial College London,2009:10-15.
[2] [2] Gilbert G, Lu G, Yan Y. Three-dimensional tomographic reconstruction of the luminosity distribution of a combustion flame[J]. IEEE Transactions on Instrumentation and Measurement,2007,56(4):1300-1306.
[3] [3] Cai W W, Li X S, Li F, et al. Numerical and experimental validation of a three-dimensional combustion diagnostic based on tomographic chemiluminescence[J]. Optics Express,2013,21(6):7050-7064.
[5] [5] Jin Y, Guo Z, Song Y, et al. Sparse regularization-based reconstruction for 3D flame chemiluminescence tomography[J]. Applied Optics,2021,60(3):513-525.
[6] [6] Lei Q C, Wu Y, Xu W, et al. Development and Validation of a reconstruction algorithms for 3D nonlinear tomography problems[J]. Optics Express,2016,24(14):15912-15926.
[7] [7] Zhang F, Pan H, Zhang X, et al. Three-dimensional reconstruction for flame chemiluminescence field using a calibration enhanced non-negative algebraic reconstruction technique[J]. Optics Communications,2022,520:128530.
[8] [8] Ishino Y, Takeuchi K, Shiga S, et al. Non-scanning 3D-CT measurement with 40-Lens tracking camera for turbulent propane/air rich-premixed flame[C]∥6th International Energy Conversion Engineering Conference.Suzhou,China:IECEC,2008:5664.
[9] [9] Costa L C O, Reader A J. Deep learning for suppression of resolution-recovery arte facts in MLEM PET image reconstruction[C]∥In 2017 IEEE Nuclear Science Symposium and Medical Imaging Conference(NSS/MIC),2017,10:1-3.
[10] [10] Hertz H M, Faris G W. Emission tomography of flame radicals[J]. Optics Letters,1988,13(5):351-353.
[11] [11] Wang Q, Yu T, Liu H, et al. Optimization of camera arrangement for volumetric tomography with constrained optical access[J]. JOSA B,2020,37(4):1231-1239.
[12] [12] Sanned D, Lindstrm J, Roth A, et al. Arbitrary position 3D tomography for practical application in combustion diagnostics[J]. Measurement Science and Technology,2022,33(12):125206.
[13] [13] Wang K, Li F, Zeng F, et al. Computed tomography measurement of 3D combustion chemiluminescence using single camera[C]∥Optical Measurement Technology and Instrumentation. Beijing, China:SPIE,2016:10131-10155.
[14] [14] Hossain M M, Lu G, Yan Y. Three-dimensional reconstruction of combustion flames through optical fiber sensing and CCD imaging[C]∥International Instrumentation and Measurement Technology Conference.Hangzhou,China:IEEE,2011:1-5.
[15] [15] Hossain M M, Lu G, Yan Y. Measurement of flame temperature distribution using optical tomographic and two-color plyometric techniques[C]∥International Instrumentation and Measurement Technology Conference Proceedings.Shanghai,China:IEEE,2012:1856-1860.
[16] [16] Hossain M M, Lu G, Yan Y. Three-dimensional reconstruction of flame temperature and emissivity through tomographic imaging and plyometric measurement[C]∥ International Conference on Imaging Systems and Techniques Proceedings. Shanghai, China:IEEE,2012:13-17.
[17] [17] Zhao J. Liu H. Cai W W. Numerical and experimental validation of a single-camera 3D velocimetry based on endoscopic tomography[J]. Appl Opt,2019,58, (6):1363-1373.
[18] [18] Dempster A P, Laird N M, Rubin D B. Maximum likelihood from incomplete data via the EM algorithm[J]. Journal of the Royal Statistical Society,1977,39:1-38.
[19] [19] Shepp L A and Vardi Y. Maximum likelihood reconstruction for emission tomography[J]. IEEE Trans Medical Imaging,1982,1:113122.
[20] [20] Lange K and Carson R. EM reconstruction algorithms for emission and transmission tomography[J]. Journal of Computer Assisted Tomography,1984,8:306-316.
[21] [21] Yu T, Cai W W. Benchmark evaluation of inversion algorithms for tomographic absorption spectroscopy[J]. Applied Optics,2017,56(8):2183.
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FENG Xiaoou, JIN Yi, ZHAI Chao. Reconstruction algorithm for Flame tomography based on chemiluminescence[J]. Optical Technique, 2023, 49(4): 424