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HE Li’ao (何力骜), WANG Qianqian (王茜蒨), ZHAO Yu (赵宇), LIU Li (刘莉), PENG Zhong (彭中). Study on Cluster Analysis Used with Laser-Induced Breakdown Spectroscopy[J]. Plasma Science and Technology, 2016, 18(6): 647-653. DOI: 10.1088/1009-0630/18/6/11
Citation: HE Li’ao (何力骜), WANG Qianqian (王茜蒨), ZHAO Yu (赵宇), LIU Li (刘莉), PENG Zhong (彭中). Study on Cluster Analysis Used with Laser-Induced Breakdown Spectroscopy[J]. Plasma Science and Technology, 2016, 18(6): 647-653. DOI: 10.1088/1009-0630/18/6/11

Study on Cluster Analysis Used with Laser-Induced Breakdown Spectroscopy

Funds: supported by Beijing Natural Science Foundation of China (No. 4132063)
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  • Received Date: November 07, 2015
  • Supervised learning methods (eg. PLS-DA, SVM, etc.) have been widely used with laser-induced breakdown spectroscopy (LIBS) to classify materials; however, it may induce a low correct classification rate if a test sample type is not included in the training dataset. Unsupervised cluster analysis methods (hierarchical clustering analysis, K-means clustering analysis, and iterative self-organizing data analysis technique) are investigated in plastics classification based on the line intensities of LIBS emission in this paper. The results of hierarchical clustering analysis using four different similarity measuring methods (single linkage, complete linkage, unweighted pair-group average, and weighted pair-group average) are compared. In K-means clustering analysis, four kinds of choosing initial centers methods are applied in our case and their results are compared. The classification results of hierarchical clustering analysis, K-means clustering analysis, and ISODATA are analyzed. The experiment results demonstrated cluster analysis methods can be applied to plastics discrimination with LIBS.
  • 1 Loree T R, Radziemski L J. 1981, Plasma Chemistry & Plasma Processing, 1: 271 2 Radziemski L J, Loree T R. 1981, Plasma Chemistry & Plasma Processing, 1: 281 3 Lucia F C D, Gottfried J L. 2011, Materials Today,14: 274 4 Wang Z, Yuan T B, Hou Z Y, et al. 2014, Frontiers of Physics, 9: 419 5 Lazic V, Palucci A, Jovicevic S, et al. 2011, Spectrochimica Acta Part B: Atomic Spectroscopy, 66: 644 6 Lucia F C D, Gottfried J L. 2012, Applied Optics, 51:B83 7 Serrano J, Moros J, S′ anchez C, et al. 2014, Analytica Chimica Acta, 806: 107 8 Wang Q Q, Kai L, Hua Z. 2012, Chinese Physics Letters, 29: 44206 9 Gurell J, Bengtson A, Falkenstr?m M, et al. 2012,Spectrochimica Acta Part B: Atomic Spectroscopy, 74-75: 46 10 Grzegorzek M, Schwerbel D, Balthasar D, et al.2011, Automatic Sorting of Alluminium Alloys Based on Spectroscopy Measures.¨OAGM/AAPR Workshop 2011, Graz, Austria 11 Koujelev A, Sabsabi M, Motto-Ros V, et al. 2010,Planetary & Space Science, 58: 682 12 Wang Q Q, Huang Z W, Liu K, et al. 2012, Spectroscopy and Spectral Analysis, 32: 3179 13 Sylvain G, Marjorie B, Fr′ ed′ eric P, et al. 2011, Analytical & Bioanalytical Chemistry, 400: 3331 14 Boueri M, Motto-Ros V, Lei W Q, et al. 2011, Applied Spectroscopy, 65: 307 15 Feng J, Wang Z, Li L, et al. 2013, Applied Spectroscopy, 67: 291 16 Yuan T, Wang Z, Li Z, et al. 2014, Analytica Chimica Acta, 807: 29 17 Mohri M, Rostamizadeh A, Talwalkar A. 2012, Foundations of Machine Learning. The MIT Press, Cambridge, MA, USA 18 Gottfried J L, Lucia F C D, Miziolek A W. 2009, J.Anal. At. Spectrom., 24: 288 19 Lucia F C D, Gottfried J L. 2011, Spectrochimica Acta Part B: Atomic Spectroscopy, 66: 122 20 Lucia F C D, Gottfried J L. 2012, Applied Optics, 51:B83 21 Moros J, Serrano J, Gallego F J, et al. 2013, Talanta,110: 108 22 Moros J, Serrano J, S′ anchez C, et al. 2012, J. Anal.At. Spectrom., 27: 2111 23 Gottfried J L. 2011, Analytical & Bioanalytical Chemistry, 400: 3289 24 Jr D L F, Gottfried J L, Munson C A, et al. 2008,Applied Optics, 47: G112 25 Sylvain G, Marjorie B, Fr′ ed′ eric P, et al. 2011, Analytical & Bioanalytical Chemistry, 400: 3331 26 Garcia C C, Lindner H, Niemax K. 2009, J. Anal. At.Spectrom., 24: 14 27 Lucia F C D, Gottfried J L. 2013, Journal of Physical Chemistry A, 117: 9555 28 Yin W B, Zhang L, Wang L, et al. 2012, Spectroscopy and Spectral Analysis, 32: 1355 29 Mirkin B. 1998, Mathematical Classification and Clustering: From How to What and Why. Springer Berlin Heidelberg, Berlin, Germany 30 Eeckhout L, Vandierendonck H, De Bosschere K. 2003,Journal of Instruction-Level Parallelism, 5: 1 31 Jain A K. 2010, Pattern Recognition Letters, 31: 651 32 Zhang L N, Jiang X H, Na R S. 2013, Journal of Inner Mongolia Agricultural University (Natural Science Edition), 34: 133 33 Shu H C, Wang X Z, Hua X H, et al. 2004, Fuzzy Systems and Mathematics, 18: 318 (in Chinese)
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