Omnidirectional micro aerial vehicles are a growing field of research, with demonstrated advantages for aerial interaction and uninhibited observation. While systems with complete pose omnidirectionality and high hover efficiency have been developed independently, a robust system that combines the two has not been demonstrated to date. This paper presents the design and optimal control of a novel omnidirectional vehicle that can exert a wrench in any orientation while maintaining efficient flight configurations. The system design is motivated by the result of a morphology design optimization. A six degrees of freedom optimal controller is derived, with an actuator allocation approach that implements task prioritization, and is robust to singularities. Flight experiments demonstrate and verify the system's capabilities.
@article{arxiv.2003.09512,
title = {Design and optimal control of a tiltrotor micro aerial vehicle for efficient omnidirectional flight},
author = {Mike Allenspach and Karen Bodie and Maximilian Brunner and Luca Rinsoz and Zachary Taylor and Mina Kamel and Roland Siegwart and Juan Nieto},
journal= {arXiv preprint arXiv:2003.09512},
year = {2020}
}
Comments
16 pages, 24 figures, 3 page appendix, video available at https://youtu.be/mBi9mOQaZzQ