arXiv · 2109.06998
$\mathcal{L}_1$ Adaptive Augmentation for Geometric Tracking Control of Quadrotors
Abstract
This paper introduces an $\mathcal{L}_1$ adaptive control augmentation for geometric tracking control of quadrotors. In the proposed design, the $\mathcal{L}_1$ augmentation handles nonlinear (time- and state-dependent) uncertainties in the quadrotor dynamics without assuming or enforcing parametric structures, while the baseline geometric controller achieves stabilization of the known nonlinear model of the system dynamics. The $\mathcal{L}_1$ augmentation applies to both the rotational and the translational dynamics. Experimental results demonstrate that the augmented geometric controller shows consistent and (on average five times) smaller trajectory tracking errors compared with the geometric controller alone when tested for different trajectories and under various types of uncertainties/disturbances.
Explore related subjects
Keep this discovery
Zhuohuan Wu, Sheng Cheng, Kasey A. Ackerman, Aditya Gahlawat, Arun Lakshmanan, Pan Zhao, Naira Hovakimyan. 2021-09-14. $\mathcal{L}_1$ Adaptive Augmentation for Geometric Tracking Control of Quadrotors. https://doi.org/10.1109/icra46639.2022.9811946
Cite the original work for its findings. Save a collection to share your selection of sources.