DocumentCode
1638994
Title
Fuzzy and probabilistic interpretation of spectral information
Author
Kudra, M. ; Böhlig, H. ; Geidel, E.
Author_Institution
Inst. of Phys. & Theor. Chem., Leipzig Univ., Germany
fYear
1995
Firstpage
662
Lastpage
667
Abstract
The paper shows on a spectroscopical example, how expert knowledge can be modeled by fuzzy sets or in the probabilistic sense as conditional density functions. Fuzzy sets, so-called fuzzy observations, are used to model the information available about frequency positions of main vibrations. These vibrations appear in infrared or RAMAN spectra as absorption bands. The calculation of such vibrations by means of normal coordinate analyses (NCA) often leads to a fitting of calculated frequency positions to experimental ones. Fuzzy methods can be used to evaluate calculated eigenfrequencies in the light of fuzzy observations. In the probability sense, this evaluation can be managed by Bayesian methods. Finally, comparing the fuzzy and probability approach, we conclude that both methods lead to comparable formulas and results
Keywords
Bayes methods; Raman spectra; fuzzy set theory; infrared spectra; probability; spectroscopy computing; Bayesian methods; RAMAN spectra; absorption bands; calculated frequency positions; conditional density functions; eigenfrequencies; frequency positions; fuzzy observations; fuzzy sets; infrared; main vibrations; normal coordinate analyses; probabilistic interpretation; spectral information; spectroscopy; Chemicals; Chemistry; Electromagnetic wave absorption; Frequency; Fuzzy sets; Spectroscopy; Springs; Symmetric matrices; Vectors; Vibrations;
fLanguage
English
Publisher
ieee
Conference_Titel
Uncertainty Modeling and Analysis, 1995, and Annual Conference of the North American Fuzzy Information Processing Society. Proceedings of ISUMA - NAFIPS '95., Third International Symposium on
Conference_Location
College Park, MD
Print_ISBN
0-8186-7126-2
Type
conf
DOI
10.1109/ISUMA.1995.527773
Filename
527773
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