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Article
High-Level Modular Autopilot Solution for Fast Prototyping of Unmanned Aerial Systems
Author/s | Rodríguez De Cos, Carlos
Fernández, Manuel J. Sánchez-Cuevas, Pedro Jesús Acosta Rodríguez, José Ángel Ollero Baturone, Aníbal |
Department | Universidad de Sevilla. Departamento de Ingeniería de Sistemas y Automática |
Publication Date | 2020 |
Deposit Date | 2021-01-18 |
Published in |
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Abstract | A redundant fast prototyping autopilot solution for unmanned aerial systems has been
developed and successfully tested outdoors. While its low-level backbone is executed in a Raspberry Pi
R
3 +
NAVIO2
R with a backup ... A redundant fast prototyping autopilot solution for unmanned aerial systems has been developed and successfully tested outdoors. While its low-level backbone is executed in a Raspberry Pi R 3 + NAVIO2 R with a backup autopilot, the computational power of an Intel R NUC mini-computer is employed to implement complex functionalities directly in Simulink R , thus including in-flight debugging, tuning and monitoring. Altogether, the presented tool provides a flexible and user-friendly high-level environment with enhanced computational capabilities, which drastically reduces the prototyping timespans of complex algorithms –between 50% and 75%, according to our long and proven experience in aerial robotics–, while preventing incidents thanks to its redundant design with a human-in-the-loop pilot on the reliable PX4. Three typical outdoor cases are carried out for validation in real-life scenarios, all mounted in a DJI c F550 platform. Full integration results and telemetry for more than 50 hours of outdoor flight tests are provided. |
Project ID. | DPI2017-89790-R
779411 871479 |
Citation | Rodríguez De Cos, C., Fernández, M.J., Sánchez-Cuevas, P.J., Acosta Rodríguez, J.Á. y Ollero Baturone, A. (2020). High-Level Modular Autopilot Solution for Fast Prototyping of Unmanned Aerial Systems. Institute of Electrical and Electronics Engineers (IEEE) Access, 8, 223827-223836. |
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High-Level Modular Autopilot.pdf | 2.399Mb | [PDF] | View/ | |