Abstract
In this research, we digitally archived large rocks at the sea, which are called “Sanouiwa” in Miyako city. We conducted two types of three-dimensional (3D) measurement techniques. The first is to take pictures by using drone. The second is to use Global Navigation Satellite System (GNSS). The point cloud data was generated from the high resolution camera images by using 3D shape reconstruction software. Finally, we integrated all point cloud data, and we constructed 3D triangular model by using these point cloud data.
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References
Gao, Z., Satoh, K., Doi, A., Sakakibara, K., Hosokawa, T., Harada, M., Konno, T.: 3D modeling of cultural property gardens and utilization for acceleration of disaster reconstruction. In: 23rd International Symposium of Artificial Life and Robotics (2018)
Gao, Z., Doi, A., Sakakibara, K., Harada, M., Hosokawa, T., Konno, K.: 3D modeling of cultural property gardens and utilization for acceleration of disaster reconstruction. In: Virtual Reality Society of Japan, The 32nd Tele-Immergion Technology Workshop (2017)
Shapiro, L.G., Stockman, G.C.: Computer Vision. Prentice Hall (2001). ISBN: 0-13-030796-3
Acknowledgements
For this research, we received research grants from Iwate Prefectural University Academic Research Fund (Regional Policy Research Center). We are deeply grateful to Mr. S. Daibou of specified nonprofit corporation “Tsunami Taro” for many advices.
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Gao, Z., Doi, A., Sakakibara, K., Hosokawa, T., Harada, M. (2019). 3D Measurement and Modeling for Gigantic Rocks at the Sea. In: Barolli, L., Kryvinska, N., Enokido, T., Takizawa, M. (eds) Advances in Network-Based Information Systems. NBiS 2018. Lecture Notes on Data Engineering and Communications Technologies, vol 22. Springer, Cham. https://doi.org/10.1007/978-3-319-98530-5_44
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DOI: https://doi.org/10.1007/978-3-319-98530-5_44
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