과제정보
"이 논문은 2020년도 한밭대학교 교내학술연구비의 지원을 받았음"에 교신저자는 학교 당국에 감사를 드린다.
참고문헌
- Backes, D., Smigaj, M., Schimka, M., Zahs, V., Grznaova, A., and Scaioni. M. (2020). "River morphology monitoring of a small-scale Alpine riverbed using dron photogrammetry and LiDAR." The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Vol. XLIII-B2, pp. 1017-1024.
- Bandini, F. (2017). Hydraulics and drones: Observations of water level, bathymetry and water surface velocity from unmanned aerial vehicles. Ph. D. dissertation, Technical University of Denmark, Lyngby, Denmark.
- Escobar Villanueva, J. R., Iglesias Mertinez, L. and Perez Montiel, J. I.. (2019). "DEM gennerraion from fixed-wing UAV imaging and LiDAR-Derived ground control point for flood estimations." Multidisciplinary Digital Publishing Institute (MDPI), Vol. 19, pp. 1-20.
- Flener, C., Vaaja, M., Jaakkola, A., Krooks, A., and Kaartinen, H. (2013). "Seamless mapping of river channels at high resolution using mobile LiDAR and UAV-Photography." Multidisciplinary Digital Publishing Institute (MDPI), Vol. 5, pp. 6382-6407.
- Han, S.H. (2019). "Project design plan for drone photogrammetry." Journal of the Korean Society of Civil Engineers, Vol. 39, No. 1, pp. 239-246. https://doi.org/10.12652/KSCE.2019.39.1.0239
- Kim, J.S., and Hong, Y.I. (2020). "Accuracy analysis of photogrammetry based on the layout of ground control points using UAV." Journal of The Korean Cartographic Association, Vol. 20, No. 2, pp. 41-55. https://doi.org/10.16879/jkca.2020.20.2.041
- Kim, S.-C. (2016). Analysis of flood stage for hydraulic friendly riparian buffer zone using GPS in urban river reaches. Master Thesis, Hanbat National University.
- Kim, S.-C., and Lee, J.-S. (2020). "Efficient management of water resources using spatial information technique." Proceedings of The Korean Society of Disaster and Security 2020, KCDS, p. 48.
- Kim, S.-C., and Lee, J.-S. (2021a). "Analysis of hydraulic characteristics in river using 3D geospatial information." Proceedings of The Korea Water Resources Association 2021, KWRA, p. 33.
- Kim, S.-C., and Lee, J.-S. (2021b). "Analysis of topography and hydraulic characteristics in river using UAV." Proceedings of The Korean Society of Hazard Mitigation 2021, KSHM, p. 209.
- Koutalakis, P., Tzoraki, O., and Zaimes, G. (2019). "UAVs for hydrologic scopes: Application of a low-cost UAV to estimate surface water velocity by using three different imager-based methods." Multidisciplinary Digital Publishing Institute (MDPI), Vol. 3, pp. 1-15.
- Lee, D.G., and Lee, D.-C. (2017). "Feature points detection using shaded relief map generated from LiDAR data." Korean Society of Surveying, Geodesy, Photogrammetry, and Cartography, JAMS, pp. 199-202.
- Lee, J.O., Sung, S.M., and Yun, B.Y. (2016). "Accuracy analysis of UAV phogrammetry based on the number and distribution of ground control points." Korean Society of Surveying, Geodesy, Photogrammetry, and Cartography, JAMS, pp. 133-135.
- Ministry of Land, Infrastructure and Transport (MOLIT). (2018). River drone development planning for smart river management.
- National Geographic Information Institute (NGII). (2019). Public surveying regulation.
- Park, J.-K., and Um, D.-Y. (2020). "Usability evaluation of the drone LiDAR data for river surveying." Journal of the Korea Academia-Industrial cooperation Society. Vol. 21, No. 5, pp. 592-597.
- Schumann, G.J.-P., Muhlhausen, J., and Andreadis, K.M. (2019). "Rapid mapping of small-scale river-floodplain environments using UAV SfM supports classical theory." Multidisciplinary Digital Publishing Institute (MDPI), Vol. 11, pp. 1-12.
- The Province of Chungcheongnam-Do (Chungnam). (2009). The basic plan for river maintenance in Seongyeon River (The revision).
- Yoshida, K., Maeno, S., Ogawa, S., Mano, K., and Nigo, S. (2019). "Estimation of distributed flow resistance in vegetated rivers using airborne topo-bathymetric LiDAR and its application to risk management tasks for Asahi River flooding." Journal of Flood Risk Management, Vol. 13, No. 1, pp. 1-17.