MRS Modular UAV Hardware Platforms for Supporting Research in Real-World Outdoor and Indoor Environments
Abstract
This paper presents a family of autonomous Unmanned Aerial Vehicles (UAVs) platforms designed for a diverse range of indoor and outdoor applications. The proposed UAV design is highly modular in terms of used actuators, sensor configurations, and even UAV frames. This allows to achieve, with minimal effort, a proper experimental setup for single, as well as, multi robot scenarios. Presented platforms are intended to facilitate the transition from simulations, and simplified laboratory experiments, into the deployment of aerial robots into uncertain and hard-to-model real-world conditions. We present mechanical designs, electric configurations, and dynamic models of the UAVs, followed by numerous recommendations and technical details required for building such a fully autonomous UAV system for experimental verification of scientific achievements. To show strength and high variability of the proposed system, we present results of tens of completely different real-robot experiments in various environments using distinct actuator and sensory configurations.
Keywords
Cite
@article{arxiv.2302.04778,
title = {MRS Modular UAV Hardware Platforms for Supporting Research in Real-World Outdoor and Indoor Environments},
author = {Daniel Hert and Tomas Baca and Pavel Petracek and Vit Kratky and Vojtech Spurny and Matej Petrlik and Matous Vrba and David Zaitlik and Pavel Stoudek and Viktor Walter and Petr Stepan and Jiri Horyna and Vaclav Pritzl and Giuseppe Silano and Daniel Bonilla Licea and Petr Stibinger and Robert Penicka and Tiago Nascimento and Martin Saska},
journal= {arXiv preprint arXiv:2302.04778},
year = {2023}
}
Comments
10 pages, 17 figures, conference