RA-L 2019178 citations

Keep Rollin' - Whole-Body Motion Control and Planning for Wheeled Quadrupedal Robots

Marko Bjelonic, C. Dario Bellicoso, Yvain de Viragh, Dhionis V. Sako, F. Dante Tresoldi, Fabian Jenelten, Marco Hutter

Abstract

We show dynamic locomotion strategies for wheeled quadrupedal robots that combine the advantages of both walking and driving. The developed optimization framework tightly integrates the additional degrees of freedom introduced by the wheels. Our approach relies on a zero-moment point-based motion optimization which continuously updates reference trajectories. The reference motions are tracked by a hierarchical whole-body controller which computes optimal generalized accelerations and contact forces by solving a sequence of prioritized tasks including the nonholonomic rolling constraints. Our approach has been tested on ANYmal, a quadrupedal robot that is fully torque-controlled including the nonsteerable wheels attached to its legs. We conducted experiments on flat and inclined terrains as well as over steps, whereby we show that integrating the wheels into the motion control and planning framework results in intuitive motion trajectories, which enable more robust and dynamic locomotion compared to other wheeled-legged robots. Moreover, with a speed of 4 m/s and a reduction of the cost of transport by 83%, we prove the superiority of wheeled-legged robots compared to their legged counterparts.

BibTeX
@inproceedings{ral2019_keeprollinwholeb,
  title = {Keep Rollin' - Whole-Body Motion Control and Planning for Wheeled Quadrupedal Robots},
  author = {Marko Bjelonic and C. Dario Bellicoso and Yvain de Viragh and Dhionis V. Sako and F. Dante Tresoldi and Fabian Jenelten and Marco Hutter},
  booktitle = {RA-L 2019},
  year = {2019}
}
Keep Rollin' - Whole-Body Motion Control and Planning for Wheeled Quadrupedal Robots · RA-L 2019