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Felipe Leonardo Lôbo Medeiros
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2020 – today
- 2023
- [i3]Joao P. A. Dantas, Diego Geraldo, Felipe L. L. Medeiros, Marcos R. O. A. Máximo, Takashi Yoneyama:
Real-Time Surface-to-Air Missile Engagement Zone Prediction Using Simulation and Machine Learning. CoRR abs/2311.11905 (2023) - 2022
- [j4]Geraldo Mulato De Lima Filho, Andre Rossi Kuroswiski, Felipe Leonardo Lôbo Medeiros, Mark Voskuijl, Herman Monsuur, Angelo Passaro:
Optimization of Unmanned Air Vehicle Tactical Formation in War Games. IEEE Access 10: 21727-21741 (2022) - [j3]Andre N. Costa, Felipe L. L. Medeiros, Joao P. A. Dantas, Diego Geraldo, Nei Yoshihiro Soma:
Formation control method based on artificial potential fields for aircraft flight simulation. Simul. 98(7): 575-595 (2022) - [c3]Joao P. A. Dantas, Andre N. Costa, Felipe L. L. Medeiros, Diego Geraldo, Marcos R. O. A. Máximo, Takashi Yoneyama:
Supervised Machine Learning for Effective Missile Launch Based on Beyond Visual Range Air Combat Simulations. WSC 2022: 1990-2001 - [i2]Joao P. A. Dantas, Andre N. Costa, Felipe L. L. Medeiros, Diego Geraldo, Marcos R. O. A. Máximo, Takashi Yoneyama:
Supervised Machine Learning for Effective Missile Launch Based on Beyond Visual Range Air Combat Simulations. CoRR abs/2207.04188 (2022) - [i1]Joao P. A. Dantas, Andre N. Costa, Vitor Conrado Faria Gomes, Andre Rossi Kuroswiski, Felipe L. L. Medeiros, Diego Geraldo:
ASA: A Simulation Environment for Evaluating Military Operational Scenarios. CoRR abs/2207.12084 (2022)
2010 – 2019
- 2019
- [j2]Luiz Gustavo D. O. Veras, Felipe Leonardo Lôbo Medeiros, Lamartine N. F. Guimarães:
Systematic Literature Review of Sampling Process in Rapidly-Exploring Random Trees. IEEE Access 7: 50933-50953 (2019) - 2015
- [c2]Felipe Leonardo Lôbo Medeiros, Vitor Conrado Faria Gomes, Marcia Rodrigues Campos de Aquino, Diego Geraldo, Marcos Eduardo Lopes Honorato, Luiz Henrique Moreira Dias:
A Computer Vision System for Guidance of VTOL UAVs Autonomous Landing. BRACIS 2015: 333-338 - 2012
- [b1]Felipe Leonardo Lôbo Medeiros:
Trajectory planning for unmanned aerial vehicles using computational modeling of navigation environments through visibility graphs and digital elevation models. National Institute for Space Research, São José dos Campos, Brazil, 2012 - 2011
- [j1]Felipe Leonardo Lôbo Medeiros, José Demísio Simões da Silva:
Computational Modeling for Automatic Path Planning Based on Evaluations of the Effects of Impacts of UAVs on the Ground. J. Intell. Robotic Syst. 61(1-4): 181-202 (2011) - 2010
- [c1]Felipe Leonardo Lôbo Medeiros, José Demísio Simões da Silva:
A Dijkstra Algorithm for Fixed-Wing UAV Motion Planning Based on Terrain Elevation. SBIA 2010: 213-222
Coauthor Index
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