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Journal of the Korea Concrete Institute

J Korea Inst. Struct. Maint. Insp.
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  • Korea Citation Index (KCI)

References

1 
Bruck, H. A., McNeill, S. R., Sutton, M. A., Peters, W. H. (1989), Digital image correlation using Newton-Raphson method of partial differential correction, Experimental Mechanics, 29(3), 261-267.DOI
2 
Cho, S., Yim, J., Shin, S. W., Jung, H. J., Yun, C. B., Wang, M. L. (2013), Comparative field study of cable tension measurement for a cable-stayed bridge, Journal of Bridge Engineering, 18(8), 748-757.DOI
3 
Chu, C. K., Chang, C. W., Huang, M. J., Zhang, Q. W., Lin, C. H. (2013), Tension measurements for XINBEI cable-stayed bridge with ambient vibrations and an EM tension sensor, Disaster Advances, 6(9), 63-68.Google Search
4 
Haji Agha Mohammad Zarbaf, S. E., Norouzi, M., Allemang, R., Hunt, V., Helmicki, A., Venkatesh, C. (2018), Vibration-based cable condition assessment: a novel application of neural networks, Engineering Structures, 177, 291-305.DOI
5 
Kim, B. H., Moon, S. Y., Bae, I. H., Park, T. H. (2007), Estimating tensile force of hangers in suspension bridges using frequency based SI technique: II. Field applications, The Korean Society of Civil Engineers, 28(2A), 173-179.Google Search
6 
Kim, C. H., Jo, B. W., Jun, J. T. (2012), Application of laser vibrometer to the measurement and control of cable tensile forces in cable-stayed bridges, International Journal of Distributed Sensor Networks, 10, 810682DOI
7 
Kim, M. K., Jang, J. B. (1995), Back Analysis of the Measured Displacements by the Coupled Method of Finite Elements -Boundary Elements in Tunnel, Journal of Korean Society for Rock Mechanics, 5(3), 205-213.Google Search
8 
Kim, N. S., Park, D. U., Park, Y. M., Cheung, J. H. (2007), Back analysis technique for the estimation of tension force on hanger cables, Journal of the Earthquake Engineering Society of Korea, 11(3), 1-10.DOI
9 
Kim, K. J., Park, Y. S., Park, S. W. (2020), Development of artificial neural network model for estimation of cable tension of cable-stayed bridge, Journal of the Korea Academia-Industrial Cooperation Society, 21(3), 414-419.DOI
10 
Kim, K. S. (2012), Principle of digital image correlation, Journal of the Korean Society for Nondestructive Testing, 32(5), 597-602.Google Search
11 
Kim, S. W., Jeon, B. G., Cheung, J. H., Kim, S. D., Park, J. B. (2017), Stay cable tension estimation using a vision-based monitoring system under various weather conditions, Journal of Civil Structural Health Monitoring, 7(3), 343-357.DOI
12 
Kim, S. W., Jeon, B. G., Kim, N. S., Park, J. C. (2013), Vision-based monitoring system for evaluating cable tensile forces on a cable-stayed bridge, Structural Health Monitoring, 12(5-6), 509-517.DOI
13 
Kim, S. W., Kim, N. S. (2013), Dynamic characteristics of suspension bridge hanger cables using digital image processing, NDT & E International, 59, 509-517.DOI
14 
Lee, H. J. (2018), A study in the efficient tension estimation of cables under ambient vibration using minimized measurement and signal processing system, Journal of the Korea Academia-Industrial Cooperation Society, 19(11), 594-603.DOI
15 
Pan, B., Qian, K., Xie, H., Asundi, A. (2009), Two-dimensional digital image correlation for in-plane displacement and strain measurement: a review, Measurement Science and Technology, 20(6), 1-17.DOI
16 
Park, D. Y., Kim, S. H., Kim, D. Y. (2011), Monitoring of cable force on cable-stayed bridge of multi-Strand type using FBG Sensors, The Computational Structural Engineering Institute of Korea, 24(2), 72-78.Google Search
17 
Park, T. H., Moon, S. Y., Joo, H. J., Kim, B. H. (2007), Estimating tensile force of hangers in suspension bridges using frequency based SI technique: I. theory, The Korean Society of Civil Engineers, 28(2a), 165-172.Google Search
18 
Shimada, T. (1994), Estimating method of cable tension from natural frequency of high mode, Proceeding of Japan Society of Civil Engineers, 501(1-29), 163-171.DOI
19 
Sim, S. H., Li, J., Jo, H., Park, J. W., Cho, S., Spencer, B. F., Jung, H. J. (2014), A wireless smart sensor network for automated monitoring of cable tension, Smart Materials and Structures, 23(2), 025006DOI
20 
Yang, K. T. (2004), Indirect estimation of cable tension using dynamic characteristics, Journal of Korean Society of Mechanical Technology, 6(2), 15-23.Google Search