Acknowledgement
The first author disclosed receipt of the financial support by China Scholarship Council Grant No.201806380151. The corresponding author acknowledges the support from Australian Research Council Discovery project DP210103631, "AI Assisted Probabilistic Structural Health Monitoring with Uncertain Data".
References
- Baqersad, J., Niezrecki, C. and Avitabile, P. (2015), "Extracting full-field dynamic strain on a wind turbine rotor subjected to arbitrary excitations using 3D point tracking and a modal expansion technique", J. Sound Vib., 352, 16-29. https://doi.org/10.1016/j.jsv.2015.04.026
- Bay, H., Ess, A., Tuytelaars, T. and Van Gool, L. (2008), "Speeded-Up Robust Features (SURF)", Comput. Vision Image Und., 110(3), 346-359. https://doi.org/10.1016/j.cviu.2007.09.014
- Brest, J. and Maucec, M. (2008), "Population size reduction for the differential evolution algorithm", Appl. Intell., 29, 228-247. https://doi.org/10.1007/s10489-007-0091-x
- Brest, J., Greiner, S., Boskovic, B., Mernik, M. and Zumer, V. (2006), "Self-Adapting Control Parameters in Differential Evolution: A Comparative Study on Numerical Benchmark Problems", IEEE Transact. Evolut. Comput., 10(6), 646-657. https://doi.org/10.1109/TEVC.2006.872133
- Cawley, P. and Adams, R.D. (1979), "The location of defects in structures from measurements of natural frequencies", J. Strain Anal. Eng., 14(2), 49-57. https://doi.org/10.1243/03093247v142049
- Chen, Z.P. and Yu, L. (2017), "A novel PSO-based algorithm for structural damage detection using Bayesian multi-sample objective function", Struct. Eng. Mech., Int. J., 63(6), 825-835. https://doi.org/10.12989/sem.2017.63.6.825
- Chen, F., Chen, X., Xie, X., Feng, X. and Yang, L. (2013), "Full-field 3D measurement using multi-camera digital image correlation system", Opt. Laser Eng., 51(9), 1044-1052. https://doi.org/10.1016/j.optlaseng.2013.03.001
- Das, S. and Suganthan, P.N. (2011), "Differential evolution: A survey of the state-of-the-art", IEEE Transact. Evolut. Comput., 15(1), 4-31. https://doi.org/10.1109/TEVC.2010.2059031
- Ding, Z., Li, J. and Hao, H. (2019), "Structural damage identification using improved Jaya algorithm based on sparse regularization and Bayesian inference", Mech. Syst. Signal Pr., 132, 211-231. https://doi.org/10.1016/j.ymssp.2019.06.029
- Feng, D. 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
- Hao, H. and Xia, Y. (2002), "Vibration-based damage detection of structures by genetic algorithm", J. Comput. Civil Eng., 16(3), 222-229. https://doi.org/10.1061/(ASCE)0887-3801(2002)16:3(222)
- Hao, H., Bi, K., Chen, W., Pham, T.M. and Li, J. (2023), "Towards next generation design of sustainable, durable, multi-hazard resistant, resilient, and smart civil engineering structures", Eng. Struct., 277, 115477. ttps://doi.org/10.1016/j.engstruct.2022.115477
- Harris, C. and Stephens, M. (1988), "A combined corner and edge detector", Proceedings of the 4th Alvey Vision Conference, Manchester, UK, September.
- Helfrick, M.N., Niezrecki, C., Avitabile, P. and Schmidt, T. (2011), "3D digital image correlation methods for full-field vibration measurement", Mech. Syst. Signal Pr., 25(3), 917-927. https://doi.org/10.1016/j.ymssp.2010.08.013
- Hou, R., Xia, Y., Bao, Y. and Zhou, X. (2018), "Selection of regularization parameter for l1-regularized damage detection", J. Sound Vib., 423, 141-160. https://doi.org/10.1016/j.jsv.2018.02.064
- Kuddus, M.A., Li, J., Hao, H., Li, C. and Bi, K. (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. (2009), "Identification of multiple cracks in a beam using natural frequencies", J. Sound Vib., 320(3), 482-490. https://doi.org/10.1016/j.jsv.2008.10.033
- Loop, C. and Zhang, Z. (1999), "Computing Rectifying Homographies for Stereo Vision", Proceedings of 1999 IEEE Computer Society Conference on Computer Vision and Pattern Recognition, 1. https://doi.org/10.1109/CVPR.1999.786928
- Lowe, D.G. (1999), "Object recognition from local scale-invariant features", Proceedings of the Seventh IEEE International Conference on Computer Vision, Corfu, Greece, September.
- Lu, Z.R. and Law, S.S. (2007), "Features of dynamic response sensitivity and its application in damage detection", J. Sound Vib., 303(1-2), 305-329. https://doi.org/10.1016/j.jsv.2007.01.021
- Lu, Z.-R. and Wang, L. (2017), "An enhanced response sensitivity approach for structural damage identification: convergence and performance", Int. J. Numer. Meth. Eng., 111(13), 1231-1251. https://doi.org/10.1002/nme.5502
- Lucas, B. and Kanade, T. (1981), "An Iterative Image Registration Technique with an Application to Stereo Vision", Proceedings of the 7th International Joint Conference on Artificial Intelligence, Vancouver, B.C., Canada, August.
- Narazaki, Y., Gomez, F., Hoskere, V., Smith, M.D. and Spencer Jr, B.F. (2020), "Efficient development of vision-based dense three-dimensional displacement measurement algorithms using physics-based graphics models", Struct. Health Monitor., 20(4), 1841-1863. https://doi.org/10.1177/1475921720939522
- Pan, B., Qian, K., Xie, H. and Asundi, A. (2009), "Two-dimensional digital image correlation for in-plane displacement and strain measurement: a review", Measure. Sci. Technol., 20(6), 062001. https://doi.org/10.1088/0957-0233/20/6/062001
- Peeters, B. and De Roeck, G. (1999), "Reference-based stochastic subspace identification for output-only modal analysis", Mech. Syst. Signal Pr., 13(6), 855-878. https://doi.org/10.1006/mssp.1999.1249
- Peng, F., Tang, K., Chen, G. and Yao, X. (2009), "Multi-start JADE with knowledge transfer for numerical optimization", Proceedings of 2009 IEEE Congress on Evolutionary Computation, Trondheim, Norway, May.
- Qin, A.K., Huang, V.L. and Suganthan, P.N. (2009), "Differential evolution algorithm with strategy adaptation for global numerical optimization", IEEE Transact. Evolut. Comput., 13(2), 398-417. https://doi.org/10.1109/TEVC.2008.927706
- Reu, P.L., Rohe, D.P. and Jacobs, L.D. (2017), "Comparison of DIC and LDV for practical vibration and modal measurements", Mech. Syst. Signal Pr., 86, 2-16. https://doi.org/10.1016/j.ymssp.2016.02.006
- Rosten, E. and Drummond, T. (2005), "Fusing points and lines for high performance tracking", Proceedings of IEEE International Conference on Computer Vision, Bejing, China, October.
- Shao, Y., Li, L., Li, J., An, S. and Hao, H. (2021), "Computer vision based target-free 3D vibration displacement measurement of structures", Eng. Struct., 246, 113040. https://doi.org/10.1016/j.engstruct.2021.113040
- Shi, J. and Tomasi, C. (1994), "Good features to track", Proceedings of IEEE Conference on Computer Vision and Pattern Recognition, Seattle, WA, USA, June.
- Storn, R. (1996), "On the usage of differential evolution for function optimization", Proceedings of North American Fuzzy Information Processing, Berkeley, California, USA, June.
- Storn, R. and Price, K. (1997), "Differential evolution-a simple and efficient heuristic for global optimization over continuous spaces", J. Global Optim., 11(4), 341-359. https://doi.org/10.1023/A:1008202821328
- Tan, D., Li, J., Hao, H. and Nie, Z. (2023), "Target-free vision-based approach for modal identification of a simply-supported bridge", Eng. Struct., 279, 115586. https://doi.org/10.1016/j.engstruct.2022.115586
- Tanabe, R. and Fukunaga, A. (2013), "Success-history based parameter adaptation for Differential Evolution", Proceedings of 2013 IEEE Congress on Evolutionary Computation, Cacun, Mexico, June.
- Tanabe, R. and Fukunaga, A.S. (2014), "Improving the search performance of SHADE using linear population size reduction", Proceedings of 2014 IEEE Congress on Evolutionary Computation, Beijing, China, July.
- Tikhonov, A.N. (1963), "On the solution of ill-posed problems and the method of regularization", Dokl. Akad. Nauk SSSR, 151(3), 501-504.
- Titurus, B. and Friswell, M.I. (2008), "Regularization in model updating", Int. J. Numer. Meth. Eng., 75(4), 440-478. https://doi.org/10.1002/nme.2257
- Tomasi, C. and Kanade, T. (1999), "Shape and Motion from Image Streams: a Factorization Method-Part 3 Detection and Tracking of Point Features", Int. J. Comput. Vision, 9(2), 137-54. https://doi.org/10.1007/BF00129684
- Trajkovic, M. and Hedley, M. (1998), "Fast corner detection", Image Vision Comput., 16(2), 75-87. https://doi.org/10.1016/S0262-8856(97)00056-5
- Vlasic, I., Ðurasevic, M. and Jakobovic, D. (2019), "Improving genetic algorithm performance by population initialisation with dispatching rules", Comput. Ind. Eng., 137, 106030. https://doi.org/10.1016/j.cie.2019.106030
- Xu, Z., Zhang, H., Wang, Y., Chang, X. and Liang, Y. (2010), "L1/2 regularization", Science China Information Sciences, 53(6), 1159-1169. https://doi.org/10.1007/s11432-010-0090-0
- 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 Monitor., 23(12), 1405-1416. https://doi.org/10.1002/stc.1850
- Zepeng, C. and Yu, L. (2017), "A novel PSO-based algorithm for structural damage detection using Bayesian multi-sample objective function", Struct. Eng. Mech., Int. J., 63, 825-835. https://doi.org/10.12989/sem.2017.63.6.825
- Zhang, Z. (2003), "Single-view geometry of a rectangle with application to whiteboard image rectification", Microsoft Research; Redmond, WA, USA.
- Zhang, J. and Sanderson, A.C. (2009), "JADE: adaptive differential evolution with optional external archive", IEEE Transact. Evolut. Comput., 13(5), 945-958. https://doi.org/10.1109/TEVC.2009.2014613
- Zhang, C.D. and Xu, Y.L. (2016), "Comparative studies on damage identification with Tikhonov regularization and sparse regularization", Struct. Control Health Monitor., 23(3), 560-579. https://doi.org/10.1002/stc.1785
- Zhong, S. and Oyadiji, S.O. (2011), "Detection of cracks in simply-supported beams by continuous wavelet transform of reconstructed modal data", Comput. Struct., 89(1-2), 127-148. https://doi.org/10.1016/j.compstruc.2010.08.008