Voir la notice de l'article provenant de la source Math-Net.Ru
@article{MAIS_2023_30_4_a4, author = {A. V. Ryabinov and A. I. Saveliev and D. A. Anikin}, title = {Modeling the influence of external influences on the process of automated landing of a {UAV-quadcopter} on a moving platform using technical vision}, journal = {Modelirovanie i analiz informacionnyh sistem}, pages = {366--381}, publisher = {mathdoc}, volume = {30}, number = {4}, year = {2023}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/MAIS_2023_30_4_a4/} }
TY - JOUR AU - A. V. Ryabinov AU - A. I. Saveliev AU - D. A. Anikin TI - Modeling the influence of external influences on the process of automated landing of a UAV-quadcopter on a moving platform using technical vision JO - Modelirovanie i analiz informacionnyh sistem PY - 2023 SP - 366 EP - 381 VL - 30 IS - 4 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/MAIS_2023_30_4_a4/ LA - ru ID - MAIS_2023_30_4_a4 ER -
%0 Journal Article %A A. V. Ryabinov %A A. I. Saveliev %A D. A. Anikin %T Modeling the influence of external influences on the process of automated landing of a UAV-quadcopter on a moving platform using technical vision %J Modelirovanie i analiz informacionnyh sistem %D 2023 %P 366-381 %V 30 %N 4 %I mathdoc %U http://geodesic.mathdoc.fr/item/MAIS_2023_30_4_a4/ %G ru %F MAIS_2023_30_4_a4
A. V. Ryabinov; A. I. Saveliev; D. A. Anikin. Modeling the influence of external influences on the process of automated landing of a UAV-quadcopter on a moving platform using technical vision. Modelirovanie i analiz informacionnyh sistem, Tome 30 (2023) no. 4, pp. 366-381. http://geodesic.mathdoc.fr/item/MAIS_2023_30_4_a4/
[1] A. Motienko, I. Vatamaniuk, A. Saveliev, “Development of technical appearance of human-machine interface for group control of unmanned robots when performing agricultural tasks”, Robotics and Technical Cybernetics, 16:4 (2021), 299–311 | DOI
[2] A. Ronzhin, A. Saveliev, “Artificial intelligence systems for solving problems of agro-industrial complex digitalization and robotization”, Agricultural Machinery and Technologies, 16:2 (2022), 22–29 | DOI
[3] A. Saveliev, V. Lebedeva, I. Lebedev, M. Uzdiaev, “An approach to the automatic construction of a road accident scheme using UAV and deep learning methods”, Sensors, 22:12 (2022), 4728 | DOI
[4] A. Nosov et al, “Case study of transporting blood components using an unmanned aerial vehicle”, Disaster Medicine, 3 (2022), 65–69 | DOI
[5] A. Saveliev, E. Aksamentov, E. Karasev, “Automated terrain mapping based on mask R-CNN neural network”, International Journal of Intelligent Unmanned Systems, 10:2/3 (2022), 267–277 | DOI
[6] V. Lebedeva, K. Kamynin, I. Lebedev, L. Kuznetsov, A. Saveliev, “Method for distributed mapping of terrain by a heterogeneous group of robots based on google cartographer”, Proceedings of the Computational Methods in Systems and Software, 596 (2022), 584–597
[7] A. Saveliev, I. Lebedev, “Method of autonomous survey of power lines using a multi-rotor UAV”, Frontiers in Robotics and Electromechanics, Springer, 2023, 359–376 | DOI
[8] Y. Vasunina, D. Anikin, A. Saveliev, “Algorithm of UAV trajectory creation for data collecting from seismological sensors”, International Russian Automation Conference (RusAutoCon), 2023, 747–752
[9] D. Anikin, A. Ryabinov, A. Saveliev, A. Semenov, “Autonomous landing algorithm for UAV on a mobile robotic platform with a fractal marker”, Interactive Collaborative Robotics (ICR), 2023, 357–368
[10] J. Morales, I. Castelo, R. Serra, P. U. Lima, M. Basiri, “Vision-based autonomous following of a moving platform and landing for an unmanned aerial vehicle”, Sensors, 23 (2023), 829 | DOI
[11] P. Wang, C. Wang, J. Wang, M. Meng, “Quadrotor autonomous landing on moving platform”, Procedia Computer Science, 209 (2022), 40–49 | DOI
[12] A. Paris, B. Lopez, J. How, “Dynamic landing of an autonomous quadrotor on a moving platform in turbulent wind conditions”, IEEE International Conference on Robotics and Automation (ICRA), 2020, 9577–9583
[13] Y. Feng, C. Zhang, S. Baek, S. Rawashdeh, A. Mohammadi, “Autonomous landing of a UAV on a moving platform using model predictive control”, Drones, 2 (2018), 34 | DOI
[14] J. Wubben et al, “A vision-based system for autonomous vertical landing of unmanned aerial vehicles”, 23rd International Symposium on Distributed Simulation and Real Time Applications (DS-RT), 2019, 1–7
[15] Z. Zhao et al, “Vision-based autonomous landing control of a multi-rotor aerial vehicle on a moving platform with experimental validations”, IFAC-PapersOnLine, 55, 2022, 1–6 | DOI
[16] T. Matsui, M. Ikehara, “Gan-based rain noise removal from single-image considering rain composite models”, 28th European Signal Processing Conference (EUSIPCO), 2021, 665–669
[17] S. Shapiro, M. Wilk, “An analysis of variance test for normality”, Biometrika, 52 (1965), 591–611 | DOI | MR | Zbl
[18] H. Mann, D. Whitney, “On a test of whether one of two random variables is stochastically larger than the other”, The annals of mathematical statistics, 18 (1947), 50–60 | DOI | Zbl