1 윤정방, "유전자 알고리즘을 이용한 모드기반 교량의 해석모델개선" 한국전산구조공학회 17 (17): 389-404, 2004
2 최병민, "유전자 알고리즘을 이용한 구조물 손상 탐색기법에 관한 연구" 한국소음진동공학회 17 (17): 80-87, 2007
3 이종재, "상시진동 데이터를 이용한 교량의 손상추정기법" 대한토목학회 25 (25): 375-386, 2005
4 김정태, "고유진동수와 모드변형에너지를 이용한 향상된유전알고리즘 기반 손상검색기법" 한국전산구조공학회 19 (19): 313-322, 2006
5 Wu, X., "Use of neural networks in detection of structural damage" 42 (42): 649-659, 1992
6 Beyer, H.G., "The theory of evolution strategies" Springer 380-, 2001
7 Yan, A., "Structural damage localization by combining flexibility and stiffness methods" 27 (27): 1752-1761, 2005
8 Ge, M., "Structural damage identification using system dynamic properties" 83 (83): 2185-2196, 2005
9 Cobb, R.G., "Structural damage identification from frequency response data" 334-344, 1997
10 Sreenivas, A., "Signal versus noise in damage detection by experimental modal analysis" ASCE 123 (123): 237-245, 1997
1 윤정방, "유전자 알고리즘을 이용한 모드기반 교량의 해석모델개선" 한국전산구조공학회 17 (17): 389-404, 2004
2 최병민, "유전자 알고리즘을 이용한 구조물 손상 탐색기법에 관한 연구" 한국소음진동공학회 17 (17): 80-87, 2007
3 이종재, "상시진동 데이터를 이용한 교량의 손상추정기법" 대한토목학회 25 (25): 375-386, 2005
4 김정태, "고유진동수와 모드변형에너지를 이용한 향상된유전알고리즘 기반 손상검색기법" 한국전산구조공학회 19 (19): 313-322, 2006
5 Wu, X., "Use of neural networks in detection of structural damage" 42 (42): 649-659, 1992
6 Beyer, H.G., "The theory of evolution strategies" Springer 380-, 2001
7 Yan, A., "Structural damage localization by combining flexibility and stiffness methods" 27 (27): 1752-1761, 2005
8 Ge, M., "Structural damage identification using system dynamic properties" 83 (83): 2185-2196, 2005
9 Cobb, R.G., "Structural damage identification from frequency response data" 334-344, 1997
10 Sreenivas, A., "Signal versus noise in damage detection by experimental modal analysis" ASCE 123 (123): 237-245, 1997
11 Hajela, P., "Recent developments in damage detection based on system identification methods" 2 (2): 1-10, 1990
12 Lu, Q., "Multiple damage location with flexibility curvature and relative frequency change for beam structures" 253 (253): 1101-1114, 2002
13 Perry, M.J., "Modified genetic algorithm strategy for structural identification" 84 (84): 529-540, 2006
14 Doebling, S.W., "Minimum-rank optimal update of elemental stiffness parameters for structural damage identification" 34 (34): 2615-2621, 1996
15 Michalewicz, Z., "Genetic algorithms + Data structures=Evolution programs" 387-, 1999
16 Chou, J.H., "Genetic algorithm in structural damage detection" 79 (79): 1335-1353, 2001
17 Ratcliffe, C.P., "Damage detection using a modified Laplacian operator on mode shape data" 204 (204): 505-517, 1997
18 Pandey, A.K., "Damage detection in structures using changes in flexibility" 169 (169): 3-17, 1994
19 Kim, H.M., "Damage detection and health monitoring of large space structures" 34th AIAA/ASME Adaptive Structures Forum 3527-3533, 1993
20 Juneja, V., "Damage detection and damage detectability - analysis and experiments" 10 (10): 135-142, 1997
21 Toksoy, T., "Bridge-condition assessment by modal flexibility" Experimental Mechanics 271-278, 1994
22 Mares, C., "An application of genetic algorithms to identify damage in elastic structures" 195 (195): 195-215, 1996
23 Stutz, L.T., "A flexibility-based continuum damage identification approach" 279 (279): 641-667, 2005