DocumentCode
2136718
Title
Genetic algorithms-based parameter optimization of a non-destructive damage detection method
Author
Sazonov, E.S. ; Klinkhachorn, P. ; Halabe, U.B.
Author_Institution
Lane Dept. of Comput. Sci. & Electr. Eng., West Virginia Univ., Morgantown, WV, USA
fYear
2002
fDate
2002
Firstpage
152
Lastpage
156
Abstract
The method of strain energy mode shapes allows the determination of changes in structural integrity from changes in the vibrational response of a structure. The modified method presented does not require knowledge of the undamaged state of the structure. Genetic algorithms (GA) are applied to produce a sufficiently optimized amplitude characteristic of a filter used to extract damage information from strain energy mode shapes. Finite element modeling has been used to produce a training data set with the known location of damages. The amplitude characteristic of the filter has been encoded as a genetic string where the pass coefficient for each harmonic of its discrete Fourier transform representation is a number between zero and one in 8-bit Gray code. The genetic optimization has been performed based on the minimization of the signal-to-distortion ratio. The amplitude characteristic of the filter was not limited to any specific configuration, i.e. either low-or high-pass or specific cut-off frequencies. The results obtained from the GA confirmed the theoretical predictions and allowed improvement in the method´s sensitivity to damages of lower magnitude.
Keywords
Gray codes; discrete Fourier transforms; genetic algorithms; minimisation; nondestructive testing; structural engineering; vibrations; 8-bit Gray code; FEA; FEM; GA; NDT; discrete Fourier transform; finite element modeling; genetic algorithms-based parameter optimization; nondestructive damage detection method; signal-to-distortion ratio minimization; strain energy mode shapes; structural integrity; vibrational response; Capacitive sensors; Data mining; Finite element methods; Genetic algorithms; Information filtering; Information filters; Optimization methods; Power harmonic filters; Shape; Training data;
fLanguage
English
Publisher
ieee
Conference_Titel
System Theory, 2002. Proceedings of the Thirty-Fourth Southeastern Symposium on
ISSN
0094-2898
Print_ISBN
0-7803-7339-1
Type
conf
DOI
10.1109/SSST.2002.1027024
Filename
1027024
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