Open Access
Issue
E3S Web of Conf.
Volume 381, 2023
International Scientific and Practical Conference “Development and Modern Problems of Aquaculture” (AQUACULTURE 2022)
Article Number 01020
Number of page(s) 12
Section Agriculture, River Ecosystems and Environment
DOI https://doi.org/10.1051/e3sconf/202338101020
Published online 14 April 2023
  1. Udin, W. S., & Ahmad, A. (2014, February). Assessment of photogrammetric mapping accuracy based on variation flying altitude using unmanned aerial vehicle. In IOP conference series: earth and environmental science (Vol. 18, No. 1, p. 012027). IOP Publishing. [CrossRef] [Google Scholar]
  2. Hlotov, V., Hunina, A., Kolb, I., Kolesnichenko, V., & Trevoho, I. (2021). The study of the “Cetus” unmanned aerial vehicle for topographic aerial surveying. Geodesy and Cartography, 47(2), 96-103. [CrossRef] [Google Scholar]
  3. Rocke, B., Ruffell, A., & Donnelly, L. (2021). Drone aerial imagery for the simulation of a neonate burial based on the geoforensic search strategy (GSS). Journal of Forensic Sciences, 66(4), 1506-1519. [CrossRef] [PubMed] [Google Scholar]
  4. Shahbazi, M., Théau, J., & Ménard, P. (2014). Recent applications of unmanned aerial imagery in natural resource management. GIScience & Remote Sensing, 51(4), 339-365. [CrossRef] [Google Scholar]
  5. Tkáč, M., & Mésároš, P. (2019). Utilizing drone technology in the civil engineering. Selected Scientific Papers-Journal of Civil Engineering, 14(1), 27-37. [CrossRef] [Google Scholar]
  6. Suh, J., & Choi, Y. (2017). Mapping hazardous mining-induced sinkhole subsidence using unmanned aerial vehicle (drone) photogrammetry. Environmental Earth Sciences, 76, 1-12. [CrossRef] [Google Scholar]
  7. Ajayi, O. G., Palmer, M., & Salubi, A. A. (2018). Modelling farmland topography for suitable site selection of dam construction using unmanned aerial vehicle (UAV) photogrammetry. Remote Sensing Applications: Society and Environment, 11, 220-230. [CrossRef] [Google Scholar]
  8. Bliakharskii, D. P., Florinsky, I. V., & Skrypitsyna, T. N. (2019). Modelling glacier topography in Antarctica using unmanned aerial survey: assessment of opportunities. International Journal of Remote Sensing, 40(7), 2517-2541. [CrossRef] [Google Scholar]
  9. Koeva, M., Muneza, M., Gevaert, C., Gerke, M., & Nex, F. (2018). Using UAVs for map creation and updating. A case study in Rwanda. Survey Review, 50(361), 312-325. [CrossRef] [Google Scholar]
  10. Shukina, O.,1 Muborakov, Kh.,1 Ruziev, A.,1 Yakubov G.1 and Ergashev, “Using Digital Photogrammetry to Create Large-Scale Topographic Maps and Plans in Uzbekistan”, M. International Journal of Geoinformatics, Vol. 18, No.1, 44-49 February 2022]. [Google Scholar]

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