Photogrammetric survey by UAV and 3D-modelling for determining of roundwood stacks volume
https://doi.org/10.21266/2079-4304.2024.247.56-71
Abstract
An accuracy of mass stocktaking in roundwood stacks with use of innovative method, based on 3D-modelling of results of UAV survey. Comparison of parameters, obtained by the innovative method with total measurements has shown the absence of any significant differences. At the same time, the methodology, based on UAV survey use, allows to reduce labor costs for stacks measurements, to take into account the terrain shape and folding gaps, to measure hard-to-reach areas, also getting actual proofable data on stacks geometry. The use of UAV in mass stocktaking of roundwood stacks is promising and is of great interest for practice.
About the Authors
A. A. PhilatovRussian Federation
PHILATOV Anton A. – PhD student of the Department of Forest Inventory, Management and Geographical Information Systems
194021. Institute per. 5. St. Petersburg. Russia
A. S. Alekseev
Russian Federation
ALEKSEEV Aleksandr S. – DSc (Geography), Professor, Head of the Department of Forest Inventory, Management and Geographical Information Systems
194021. Institute per. 5. St. Petersburg. Russia
M. O. Gurjanov
Russian Federation
GURJANOV Mikhail O. – PhD (Agricultural), Associate Professor of the Department of Forest Inventory, Management and Geographical Information Systems
194021. Institute per. 5. St. Petersburg. Russia
A. S. Golubev
Russian Federation
GOLUBEV Aleksandr S. – Lecturer of the Department of Forest Inventory, Management and Geographical Information Systems
194021, Institute per. 5. St. Petersburg. Russia
A. P. Mitchenko
Russian Federation
MITCHENKO Andrey P. – PhD (Agricultural), Deputy of General Director for Quality
197183. Sestroretskaya str. 8A. Room 18H. St. Petersburg. Russia
References
1. Afonin D.N. Metodiki izmereniya ob"ema kruglyh lesomaterialov. Byulleten' innovacionnyh tekhnologij, 2022, vol. 6, no. 3(23), pp. 19–22. (In Russ.)
2. Belyaev N., Kunickaya O., Grigor'eva O. Razvitie tekhnologij izmereniya i ucheta kruglyh lesomaterialov. Ch. 1. LesPromInform, 2023, no. 2(172), pp. 66–71. (In Russ.)
3. Belyaev N.L., Safargalieva S.F. Novejshie tekhnologii v taksacii zagotovlennyh lesomaterialov kak element precizionnogo lesnogo hozyajstva. Lesnoj vestnik. Forestry Bulletin, 2020, vol. 24, no. 3, pp. 18–25. DOI 10.18698/2542–1468-2020-3-18-25. (In Russ.)
4. Burmistrov N.I., Trusov G.I., Gur'yanov M.O. Sravnitel'nyj analiz razlichnyh metodov opredeleniya koefficientov polnodrevesnosti shtabelej kruglogo lesa hvojnyh porod. Aktual'nye voprosy lesnogo hozyajstva : materialy V Mezhdunar. molodezhnoj nauch.-prakt. konf. St. Petersburg, 11–12 noyabrya 2021 goda. St. Petersburg: SPbGLTU, 2021, pp. 199–201. (In Russ.)
5. Kuricyn A.K. Izmerenie shtabelej kruglyh lesomaterialov. OOO «Lesekspert», 2018, URL: http://les.expert/DOC/7-5_SDC_Measurement_of_roundwood_stacks_Guide.pdf (In Russ.)
6. Mitchenko A.P. Osobennosti opredeleniya i primeneniya koefficientov polnodrevesnosti. Byulleten' Associacii LESTEKH, 2022, no. 4(10), pp. 24–26. (In Russ.)
7. Moiseev V.S. Taksaciya lesa: uchebnoe posobie dlya lesotekhnicheskih vuzov. L., 1970. 258 p. (In Russ.)
8. Nagimov Z.Ya., S.S. Zubova O.V. Sychugova et al. Taksaciya otdel'nogo dereva : uchebnoe posobie. Ural'skij gosudarstvennyj lesotekhnicheskij universitet. Ekaterinburg : UGLTU, 2020. 160 p. (In Russ.)
9. Nagimov Z.Ya., Shevelina I.V., Nagimov V.Z., Artem'eva I.N. Lesotaksacionnye izmereniya : uchebnoe posobie. Ministerstvo nauki i vysshego obrazovaniya Rossijskoj Federacii, Ural'skij gosudarstvennyj lesotekhnicheskij universitet. Ekaterinburg, 2021. 95 p. (In Russ.)
10. Nikiforchin I.V. Taksaciya lesa: praktikum dlya podgotovki bakalavrov po napravleniyu 250100 «Lesnoe delo» : ucheb. posobie. St. Petersburg: SPbGLTU, 2013. 160 p. (In Russ.)
11. Shatalov N.V. Osobennosti klassifikacii BPLA samoletnogo tipa. Perspektivy razvitiya informacionnyh tekhnologij, 2016, no. 29, pp. 34–39. (In Russ.)
12. Tyurin N.A., Bessarab G.A., Kochanov V.V. Ispol'zovanie elektronnyh taheometrov pri opredelenii ob"emov shtabelej kruglyh lesomaterialov. LesPromInform, 2006, no. 4(35), pp. 76–80. (In Russ.)
13. Zubrichev N.V. Bespilotnye letatel'nye apparaty: ponyatiya, klassifikaciya, preimushchestva, sposoby primeneniya v sovremennoj zhizni. NAUKA i innovacii v 21 veke: aktual'nye voprosy, otkrytiya i dostizheniya: sb. statej XIII Mezhdunar. nauch.- prakt. konf. V 2 ch. Penza, 20 maya 2019 goda. Tom Chast' 1. Penza: Nauka i Prosveshchenie (IP Gulyaev G.Yu.), 2019, pp. 75–78. (In Russ.)
Review
For citations:
Philatov A.A., Alekseev A.S., Gurjanov M.O., Golubev A.S., Mitchenko A.P. Photogrammetric survey by UAV and 3D-modelling for determining of roundwood stacks volume. Izvestia Sankt-Peterburgskoj lesotehniceskoj akademii. 2024;1(247):56-71. (In Russ.) https://doi.org/10.21266/2079-4304.2024.247.56-71