[1]
T. Rytter: Vibration based inspection of civil engineering structure, PhD dissertation, Department of building technology and structure engineering, Aalborg University, Denmark, (1993).
Google Scholar
[2]
K. Worden: Damage detection using a novelty measure, Proceedings of the 15th international modal analysis conference, Florida, (1997).
Google Scholar
[3]
K. Worden, G. Manson, and N. R. J. Fieller: Damage detection using outlier analysis, Journal of Sound and Vibration, Vol. 229(3), (2000), pp.647-667.
DOI: 10.1006/jsvi.1999.2514
Google Scholar
[4]
C. Zang, and M. Imregun: Structural damage identification via grey relational analysis of SVDprocessed FRFs, ISMA25, Sept. (2000).
Google Scholar
[5]
C. Zang, and M. Imregun: Structural damage detection using artificial neural networks and measured FRF data reduced via principal component projection, Journal of Sound and Vibration, Vol. 242, No. 5, (2001), pp.813-827.
DOI: 10.1006/jsvi.2000.3390
Google Scholar
[6]
C. Zang, and M. Imregun: FRF-based structural damage detection using Kohonen selforganizing maps, International Journal of Acoustics & Vibration, Vol. 5, No. 4, (2000).
DOI: 10.20855/ijav.2000.5.463
Google Scholar
[7]
C. Zang, and M. Imregun: Combined neural network and reduced FRF techniques for slight damage detection, Journal of the Archive of Applied Mechanics, Vol. 71, No. 8, (2001), p.525536.
DOI: 10.1007/s004190100154
Google Scholar
[8]
A. Messina, E. J. Williams and T. Contursi: Structural damage detection by a sensitivity and statistical-based method, Journal of Sound and Vibration, Vol. 216(5), (1998), pp.791-808.
DOI: 10.1006/jsvi.1998.1728
Google Scholar
[9]
Z. Y. Shi, S. S. Law and L. M. Zhang: Damage localization by directly using incomplete mode shapes, Journal of Engineering Mechanics, Vol. 126(6), (2000), pp.656-660.
DOI: 10.1061/(asce)0733-9399(2000)126:6(656)
Google Scholar
[10]
J. E. Mottershead and M. I. Friswell: Model updating in structural dynamics: a survey. Journal of Sound and Vibration, Vol. 167(2), (1993), pp.347-375.
DOI: 10.1006/jsvi.1993.1340
Google Scholar
[11]
P. Avitable: Correlation Considerations - Parts 1-5. 16 th International Modal Analysis Conference, Santa Barbara, California, (1998).
Google Scholar
[12]
M. Baker: Review of test/analysis correlation methods and criteria for validation of finite element models for dynamic analysis, 14 th International Modal Analysis Conference (1996), pp.985-991.
Google Scholar
[13]
R. J. Allemang and D. J. Brown: A correlation Coefficient for Modal Vector Analysis, 1st International Modal Analysis Conference, (1982), pp.110-116.
Google Scholar
[14]
W. Heylen, S. Lammens, P. Sas: Combining numerical and experimental analysis models. Modal Analysis Theory and Testing, Section A. 6, K.U. Leuven-PMA, Belgium, (1998).
Google Scholar
[15]
U. Tengzelius, N. Horlin, U. Emborg, M. Gustavsson, H. Van der Auweraer, M. Iadevaia: Correlation of medium frequency test and FE models for a trimmed aircraft section, Proc. 4 th CEAS/AIAA Aeroacoustics conference, June 2-4, (1998) pp.605-616.
DOI: 10.2514/6.1998-2307
Google Scholar
[16]
W. Heylen and S. Lammens: FRAC: a consistent way of comparing frequency response functions. Proceedings of conference on identification in engineering systems, (1996).
Google Scholar
[17]
C. Zang, H. Grafe, and M. Imergun: Frequency-domain criteria for correlating and updating dynamic finite element models, Mechanical System and Signal Processing, Vol. 15(1), (2001), pp.139-155.
DOI: 10.1006/mssp.2000.1357
Google Scholar
[18]
Los Alamos National Laboratory Website: http: / www. lanl. gov.
Google Scholar