Acknowledgement
The research described in this paper was financially supported by National Key Rand D Program of China [2018YFB1600202, 2018YFC0705606], NSFC [Grant No. 51678204, 51638007, 51922034] and Guangxi Science Base and Talent Program [Grand No. 710281886032].
References
- Akbar, M.A., Qidwai, U. and Jahanshahi, M.R. (2019), "An evaluation of image-based structural health monitoring using integrated unmanned aerial vehicle platform", Struct. Control Health Monitor., 26(1), e2276. https://doi.org/10.1002/stc.2276
- Bang, S., Kim, H. and Kim, H. (2017), "UAV-based automatic generation of high-resolution panorama at a construction site with a focus on preprocessing for image stitching", Automat. Constr., 84, 70-80. https://doi.org/10.1016/j.autcon.2017.08.031
- Brown, M. and Lowe, D. (2007), "Automatic panoramic image stitching using invariant features", Int. J. Comput. Vision, 74(1), 59-73. https://doi.org/10.1007/s11263-006-0002-3
- Calonder, M., Lepetit, V., Strecha, C. and Fua, P. (2010), "BRIEF: Binary robust independent elementary features", Profeedings of European Conference on Computer Vision, 6314, 778-792.
- Carlos, E.T. (2008), "Gauss Kruger projection for areas of wide longitudinal extent", Int. J. Geographi. Info. Sci., 22(6), 703-719. https://doi.org/10.1080/13658810701602286
- De Melo, R.R.S., Costa, D.B., Lvares, J.S. and Irizarry, J. (2017), "Applicability of unmanned aerial system (UAS) for safety inspection on construction sites", Safety Sci., 98, 174-185. https://doi.org/10.1016/j.ssci.2017.06.008
- Ellenberg, A., Branco, L., Krick, A., Bartoli, I. and Kontsos, A. (2014), "Use of unmanned aerial vehicle for quantitative infrastructure evaluation", J. Infrastruct. Syst., 21(3), 04014054. https://doi.org/10.1061/(ASCE)IS.1943-555X.0000246
- Hackl, J., Adey, B.T., Wozniak, M. and Schumperlin, O. (2017), "Use of unmanned aerial vehicle photogrammetry to obtain topographical information to improve bridge risk assessment", J. Infrastruct. Syst., 24(1), 04017041. https://doi.org/10.1061/(ASCE)IS.1943-555X.0000393
- Ham, Y., Han, K.K., Lin, J.J. and Golparvar-Fard, M. (2016), "Visual monitoring of civil infrastructure systems via cameraequipped unmanned aerial vehicles (UAV): A review of related works", Visualiz. Eng., 4(1), 1. https://doi.org/10.1186/s40327-015-0029-z
- Irizarry, J. and Costa, D.B. (2016), "Exploratory study of potential applications of unmanned aerial systems for construction management tasks", J. Manage. Eng., 32(3), 05016001. https://doi.org/10.1061/(ASCE)ME.1943-5479.0000422
- Kim, S. and Kim, S. (2018), "Opportunities for construction site monitoring by adopting first personal view (FPV) of a drone", Smart Struct. Syst., Int. J., 21(2), 139-149. https://doi.org/10.12989/sss.2018.21.2.139
- Li, H., Zhang, Q.-L., Yang, B., Lu, J. and Hu, J. (2015), "Development and application of construction monitoring system for shanghai tower", Smart Struct. Syst., Int. J., 15(4), 1019-1039. https://doi.org/10.12989/sss.2015.15.4.1019
- Li, M., Chen, R., Zhang, W., Li, D., Liao, X., Wang, L., Pan, Y. and Zhang, P. (2017), "A stereo dual-channel dynamic programming algorithm for uav image stitching", Sensors, 17(9), 2060. https://doi.org/10.3390/s17092060
- Lin, C., Pankanti, S., Ramamurthy, K. and Aravkin, A. (2015), "Adaptive as-natural-as-possible image stitching", Proceedings of the IEEE Conference on Computer Vision and Pattern Recognition, Boston, MA, USA, June.
- Liu, P., Chen, A.Y., Huang, Y.-N., Han, J.-Y., Lai, J.-S., Kang, S.-C., Wu, T.-H., Wen, M.-C. and Tsai, M.-H. (2014), "A review of rotorcraft unmanned aerial vehicle (UAV) developments and applications in civil engineering", Smart Struct. Syst., Int. J., 13(6), 1065-1094. https://doi.org/10.12989/sss.2014.13.6.1065
- Matthew, B. and Lowe, D.G. (2007), "Automatic panoramic image stitching using invariant features", Int. J. Comput. Vision, 74(1), 59-73. https://doi.org/10.1007/s11263-006-0002-3
- Metni, N. and Hamel, T. (2007), "A UAV for bridge inspection: Visual servoing control law with orientation limits", Automat. Constr., 17(1), 3-10. https://doi.org/10.1016/j.autcon.2006.12.010
- Microsoft research image composite editor. http://research.microsoft.com/en-us/um/redmond/groups/ivm/ice/
- Reagan, D., Sabato, A., Niezrecki, C., Yu, T. and Wilson, R. (2016), "An autonomous unmanned aerial vehicle sensing system for structural health monitoring of bridges", In: Nondestructive Evaluation and Health Monitoring, San Diego, CA, USA, March.
- Rosten, E. and Drummond, T. (2006), "Machine learning for highspeed corner detection", Profeedings of European Conference on Computer Vision, 3951, 430-443.
- Rublee, E., Rabaud, V., Konolige, K. and Bradski, G.R. (2011), "ORB: An efficient alternative to sift or surf", Proceedings of 2011 IEEE International Conference on Computer Vision, Barcelona, Spain, November.
- Torge, W. and Muller, J. (2012), Geodesy, Walter de Gruyter.
- Xiang, R., Sun, M., Jiang, C., Liu, L., Zheng, H. and Li, X. (2014), "A method of fast mosaic for massive uav images", Land Surface Remote Sensing II, 9260, 92603W. https://doi.org/10.1117/12.2069201
- Xu, X., Soga, K., Nawaz, S., Moss, N., Bowers, K. and Gajia, M. (2015), "Performance monitoring of timber structures in underground construction using wireless smartplank", Smart Struct. Syst., Int. J., 15(3), 769-785. https://doi.org/10.12989/sss.2015.15.3.769
- Zhang, W., Li, X., Yu, J., Kumar, M. and Mao, Y. (2018), "Remote sensing image mosaic technology based on surf algorithm in agriculture", EURASIP J. Image Video Process., 2018(1), 85. https://doi.org/10.1186/s13640-018-0323-5