Acknowledgement
This research was supported by Guangdong Basic and Applied Basic Research Foundation, China (Project No. 2018A030313314); the Wuyi University Fund for Joint Research with Hong Kong and Macao (Project No. 2019WGALH18); the Research Grants Council of the Hong Kong Special Administrative Region, China (Project No. PolyU 152621/16E) and NSFC Joint Research Fund for Overseas and Hong Kong and Macao Scholars (Project No. 51629801).
References
- Bao, Y.Q., Tang, Z.Y., Li, H. and Zhang, Y.F. (2019), "Computer vision and deep learning-based data anomaly detection method for structural health monitoring", Struct. Health Monit., 18(2), 401-421. https://doi.org/10.1177/1475921718757405
- Brownjohn, J.M.W. (2006), "Structural health monitoring of civil infrastructure", Phil. Trans. R. Soc., 365, 589-622. https://doi.org/10.1098/rsta.2006.1925
- Busca, G., Cigada, A., Mazzoleni, P. and Zappa, E. (2015), "Vibration monitoring of multiple bridge points by means of a unique vision-based measuring system", Exp. Mech., 54, 255-271. https://doi.org/10.1007/s11340-013-9784-8
- Caetano, E., Silva, S. and Bateira, J. (2011), "A vision system for vibration monitoring of civil engineering structures", Exp. Tech. 35, 74-82. https://doi.org/10.1111/j.1747-1567.2010.00653.x
- Casciati, F., Casciati, S., Colnaghi, A., Faravelli, L., Rosadini, L. and Zhu, S. (2019), "Vision-based support in the characterization of superelastic U-shaped SMA elements," Smart Struct Syst., Int. J., 24(5), 669-681. https://doi.org/10.12989/sss.2019.24.5.641
- Catbas, F.N., Zaurin, R., Gul, M. and Gokce, H.B. (2012), "Sensor networks, computer imaging, and unit influence lines for structural health monitoring: case study for bridge load rating", J. Bridge Eng., 17, 662-670. https://doi.org/10.1061/(ASCE)BE.1943-5592.0000288
- Chen, J.G., Davis, A., Wadhwa, N., Durand, F., Freeman, W. and Buyukozturk, O. (2017), "Video Camera-based vibration measurement for civil infrastructure applications", J. Infrastruct. Syst., 23(3), B4016013. https://doi.org/10.1061/(ASCE)IS.1943-555X.0000348
- Ehrhart, M. and Lienhart, W. (2015), "Monitoring of civil engineering structures using a state-of-the-art image assisted total station", J. Appl. Geodesy., 9(3), 174-182. https://doi.org/10.1515/jag-2015-0005
- Feng, D.M. and Feng, M.Q. (2016), "Vision-based multipoint displacement measurement for structural health monitoring", Struct. Control Health Monit., 23, 876-890. https://doi.org/10.1002/stc.1819
- Feng, D.M. and Feng, M.Q. (2018), "Computer vision for SHM of civil infrastructure: From dynamic response measurement to damage detection - A review", Eng. Struct., 156, 105-117. https://doi.org/10.1016/j.engstruct.2017.11.018
- Feng, D.M., Feng, M.Q., Ozer, E. and Fukuda, Y. (2015), "A Vision-based sensor for noncontact structural displacement measurement", Sensors, 15(7), 16557-16575. https://doi.org/10.3390/s150716557
- Guo, J. and Zhu, C. (2016), "Dynamic displacement measurement of large-scale structures based on the Lucas-Kanade template tracking algorithm", Mech. Syst. Signal. Pr., 66-67, 425-436. https://doi.org/10.1016/j.ymssp.2015.06.004
- Hu, Y.D., Hou, R.R., Xia, Q. and Xia, Y. (2019), "Temperature-induced displacement of supertall structures: A case study", Adv. Struct. Eng., 22(4), 982-996. https://doi.org/10.1177/1369433218795288
- Jeon, H., Bang, Y. and Myung, H. (2011), "A paired visual servoing system for 6-DOF displacement measurement of structures", Smart Mater. Struct., 20, 045019. https://doi.org/10.1088/0964-1726/20/4/045019
- Jung, H.J., Lee, J.H. Yoon, S. and Kim, I.H. (2019), "Bridge Inspection and condition assessment using Unmanned Aerial Vehicles (UAVs): Major challenges and solutions from a practical perspective", Smart Struct. Syst., Int. J., 24(5), 669-681. http://doi.org/10.12989/sss.2019.24.5.669
- Khuc, T. and Catbas, F.N. (2017), "Computer vision-based displacement and vibration monitoring without using physical target on structures", Struct. Infrastruct. Eng., 13, 505-516. https://doi.org/10.1080/15732479.2016.1164729
- Kim, K., Kim, J. and Sohn, H. (2016), "Development and full-scale dynamic test of a combined system of heterogeneous laser sensors for structural displacement measurement", Smart Mater. Struct., 25, 065015. https://iopscience.iop.org/article/10.1088/0964-1726/25/6/065015
- Koo, K.Y., Brownjohn, J.M.W., List, D.I. and Cole, R. (2013), "Structural health monitoring of the Tamar suspension bridge", Struct. Control Health Monit., 20, 609-625. https://doi.org/10.1002/stc.1481
- Kuddus, M.A., Li, J., Hao, H., Li, C. and Bi. K.M. (2019), "Target-free vision-based technique for vibration measurements of structures subjected to out-of-plane movements", Eng. Struct., 190, 210-222. https://doi.org/10.1016/j.engstruct.2019.04.019
- Lee, J.H., Ho, H.N., Shinozuka, M. and Lee, J.J. (2012), "An advanced vision-based system for real-time displacement measurement of high-rise buildings", Smart Mater. Struct., 21, 125019. https://iopscience.iop.org/article/10.1088/0964-1726/21/12/125019
- Lee, J., Lee, K.C., Cho, S. and Sim, S.H. (2017), "Computer vision-based structural displacement measurement robust to light-induced image degradation for in-service bridges", Sensors, 17(10), 2317. https://doi.org/10.3390/s17102317
- Li, J. and Hao, H. (2016), "Health monitoring of joint conditions in steel truss bridges with relative displacement sensors", Measurement, 88, 360-371. https://doi.org/10.1016/j.measurement.2015.12.009
- Olaszek, P. (1999), "Investigation of the dynamic characteristic of bridge structures using a computer vision method", Measurement, 25, 227-236. https://doi.org/10.1016/S0263-2241(99)00006-8
- Otsu, N. (1979), "A Threshold Selection Method from Gray-Level Histograms", IEEE Trans. Syst. Man Cybern, 9, 62-66. https://doi.org/10.1109/TSMC.1979.4310076
- Ou, J.P. and Li, H. (2010), "Structural health monitoring in mainland china: review and future trends", Struct. Health Monit., 9(3), 219-231. https://doi.org/10.1177/1475921710365269
- Peterson, R.L., Ziemer, R.E. and Borth, D.E. (1995), Introduction to Spread Spectrum Communications, Prentice Hall, Inc.
- Ribeiro, D., Calcada, R., Ferreira, J. and Martins, T. (2014), "Non-contact measurement of the dynamic displacement of railway bridges using an advanced video-based system", Eng. Struct., 75, 164-180. https://doi.org/10.1016/j.engstruct.2014.04.051
- Song, Y.Z., Bowen, C.R., Kim, A.H., Nassehi, A., Padget, J. and Gathercole, N. (2014), "Virtual visual sensors and their application in structural health monitoring", Struct. Health Monit., 13, 251-264. https://doi.org/10.1177/1475921714522841
- Spencer, B.F. Jr., Hoskere, V. and Narazaki, Y. (2019), "Advances in Computer Vision-Based Civil Infrastructure Inspection and Monitoring", Engineering, 5(2), 199-222. https://doi.org/10.1016/j.eng.2018.11.030
- Welch, T.B., Wright, C.H.G. and Morrow, M.G. (2011), Real-Time Digital Signal Processing from MATLAB® to C with the TMS320C6x DSPs, (Second Edition), CRC Press.
- Xia, Y., Zhang, P., Ni, Y.Q. and Zhu, H.P. (2014), "Deformation monitoring of a super-tall structure using real-time strain data", Eng. Struct., 67, 29-38. https://doi.org/10.1016/j.engstruct.2014.02.009
- Xia, Q., Cheng, Y.Y., Zhang, J. and Zhu, F.Q. (2017), "In-service condition assessment of a long-span suspension bridge using temperature-induced strain data", J. Bridge Eng., 22(3), 04016124. https://doi.org/10.1061/(ASCE)BE.1943-5592.0001003
- Xia, Q., Liu, S.L. and Zhang, J. (2020), "Temperature analysis of a long-span suspension bridge based on a time-varying solar radiation model", Smart Struct. Syst., Int. J., 25(1), 23-35. https://doi.org/10.12989/sss.2020.25.1.023
- Xu, Y., Brownjohn, J.W.M. and Kong, D. (2018), "A non-contact vision-based system for multipoint displacement monitoring in a cable-stayed footbridge", Struct. Control Health Monit., 25, e2155. https://doi.org/10.1002/stc.2155
- Ye, X.W., Ni, Y.Q., Wai, T.T., Wong, K.Y., Zhang, X.M. and Xu, F. (2013), "A vision-based system for dynamic displacement measurement of long-span bridges: algorithm and verification", Smart Struct. Syst., Int. J., 12(3-4), 363-379. https://doi.org/10.12989/sss.2013.12.3_4.363
- Ye, X.W., Dong, C.Z. and Liu, T. (2016a), "Image-based structural dynamic displacement measurement using different multi-object tracking algorithms", Smart Struct. Syst., Int. J., 17(6), 935-956. https://doi.org/10.12989/sss.2016.17.6.935
- Ye, X.W., Yi, T.H., Dong, C.Z. and Liu, T. (2016b), "Vision-based structural displacement measurement: system performance evaluation and influence factor analysis", Measurement, 88, 372-384. https://doi.org/10.1016/j.measurement.2016.01.024
- Yi, T.H., Li, H.N. and Gu, M. (2013), "Experimental assessment of high-rate GPS receivers for deformation monitoring of bridge", Measurement, 46(1), 420-432. https://doi.org/10.1016/j.measurement.2012.07.018
- Yoon, H., Elanwar, H., Choi, H., Golparvar-Fard, M. and Spencer, Jr. B.F. (2016), "Target-free approach for vision-based structural system identification using consumer-grade cameras", Struct. Control Health Monit., 23, 1405-1416. https://doi.org/10.1002/stc.1850
- Zhou, X.Q., Xia, Y., Wei, Z.L. and Wu, Q.X. (2012), "A videogrammetric technique for measuring the vibration displacement of stay cables", Geo Spat. Inf. Sci., 15(2), 135-141. https://doi.org/10.1080/10095020.2012.714105