JKSMI
Journal of the Korea Institute for
Structural Maintenance and Inspection
KSMI
Contact
Open Access
Bi-monthly
ISSN : 2234-6937 (Print)
ISSN : 2287-6979 (Online)
http://journal.auric.kr/jksmi/
Mobile QR Code
Journal of the Korea Concrete Institute
J Korea Inst. Struct. Maint. Insp.
Indexed by
Korea Citation Index (KCI)
Main Menu
Main Menu
About Journal
Aims and Scope
Subscription Inquiry
Editorial Board
For Contributors
Instructions For Authors
Ethical Guideline
Crossmark Policy
Submission & Review
Archives
Current Issue
All Issues
Journal Search
Home
All Issues
2025-10
(Vol.29 No.5)
10.11112/jksmi.2025.29.5.1
Journal XML
XML
PDF
INFO
REF
References
1
Casciati, F., Casciati, S., and Wu, L. J. (2013), Vision-based sensing in dynamic tests. Key Engineering Materials, 569, 767-774.
2
Chang, C. C., and Ji, Y. F. (2007), Flexible videogrammetric technique for three-dimensional structural vibration measurement. Journal of Engineering Mechanics, 133(6), 656-664.
3
Chen, S., Li, X., Zhang, H., Chen, G., Liu, A., and Du, X. (2015), Vision-based displacement test method for high-rise building shaking table test. Journal of Vibroengineering, 17(8), 4057-4068.
4
Cheng, W.-H., Tsai, C.-E., and Huang, H.-H. (2024), Vision-based algorithm for structural response measurement using movable camera. Measurement, 223, 114678.
5
Colombani, I. A., and Andrawes, B. (2022), A study of multi-target image-based displacement measurement approach for field testing of bridges. Journal of Structural Integrity and Maintenance, 7(4), 207-216.
6
Feng, D., and Feng, M. Q. (2017), Experimental validation of cost-effective vision-based structural health monitoring. Mechanical Systems and Signal Processing, 88, 199-211.
7
Financial Times. (2025, April 23), Istanbul shaken by 6.2 magnitude earthquake.
8
Hartley, R., and Zisserman, A. (2004), Multiple View Geometry in Computer Vision (2nd ed.). Cambridge University Press.
9
Khuc, T., and Catbas, F. N. (2017), Completely contactless structural health monitoring of real-life structures using cameras and computer vision. Structural Control and Health Monitoring, 24(1), e1852.
10
Kim, S. Y., Lee, S. J., and Choi, K. K. (2025), Dynamic characteristics of multi-degree-of-freedom frame systems derived from vision-based displacement measurement using consumer-grade camera video. Journal of Civil Structural Health Monitoring, 1-17.
11
Korea Agency for Technology and Standards. (2021), KS A 3011: Recommended illuminance levels for indoor tasks. Korean Standards Association.
12
Lee, S. J., Lee, J. E., Dinh, N. H., and Choi, K. K. (2025), Experimental and analytical investigations of the dynamic characteristics of a mold transformer with rotary friction dampers based on shaking table tests. Earthquake Engineering and Engineering Vibration, 24(2), 451-472.
13
Lee, Y., Lee, G., Moon, D. S., and Yoon, H. (2022), Vision-based displacement measurement using a camera mounted on a structure with stationary background targets outside the structure. Structural Control and Health Monitoring, 29(11), e3095.
14
Lv, J., He, P., Hou, X., Xiao, J., Wen, L., and Lv, M. (2024), A target-free vision-based method for out-of-plane vibration measurement using projection speckle and camera self-calibration technology. Engineering Structures, 303, 117416.
15
Marrugo, W., Sierra, E., Marrugo, J., Camacho, C., Romero, L. A., and Marrugo, A. G. (2014), A vision-based system for the dynamic measurement of in-plane displacements. In 2014 III International Congress of Engineering Mechatronics and Automation (CIIMA) (pp. 1-3). IEEE.
16
Park, J. W., Moon, D. S., Yoon, H., Gomez, F., Spencer, B. F., and Kim, J. R. (2018), Visual-inertial displacement sensing using data fusion of vision-based displacement with acceleration. Structural Control and Health Monitoring, 25(3), e2122.
17
Shao, Y., Li, L., Li, J., Li, Q., An, S., and Hao, H. (2023), Monocular vision based 3D vibration displacement measurement for civil engineering structures. Engineering Structures, 293, 116661.
18
Tomasi, C., and Kanade, T. (1991), Detection and tracking of point. Int J Comput Vis, 9(137-154), 3.
19
United States Geological Survey (USGS). (2024), Significant earthquakes - 2024. U.S. Geological Survey.
20
Wall Street Journal. (2025), Why the Myanmar earthquake was so destructive.
21
Wu, T., Tang, L., Shao, S., Zhang, X., Liu, Y., Zhou, Z., and Qi, X. (2022), Accurate structural displacement monitoring by data fusion of a consumer-grade camera and accelerometers. Engineering Structures, 262, 114303.
22
Xiu, C., Weng, Y., and Shi, W. (2023), Vision and vibration data fusion-based structural dynamic displacement measurement with test validation. Sensors, 23(9), 4547.
23
Xu, Y., and Brownjohn, J. M. W. (2018), Review of machine-vision based methodologies for displacement measurement in civil structures. Journal of Civil Structural Health Monitoring, 8(1), 91-110.
24
Yoneyama, S., Kitagawa, A., Iwata, S., Tani, K., and Kikuta, H. (2007), Bridge deflection measurement using digital image correlation. Experimental Techniques, 31(1).