RA-L 2020105 citations

Perceptive Locomotion in Rough Terrain - Online Foothold Optimization

Fabian Jenelten, Takahiro Miki, Aravind Elanjimattathil Vijayan, Marko Bjelonic, Marco Hutter

Abstract

Compared to wheeled vehicles, legged systems have a vast potential to traverse challenging terrain. To exploit the full potential, it is crucial to tightly integrate terrain perception for foothold planning. We present a hierarchical locomotion planner together with a foothold optimizer that finds locally optimal footholds within an elevation map. The map is generated in real-time from on-board depth sensors. We further propose a terrain-aware contact schedule to deal with actuator velocity limits. We validate the combined locomotion pipeline on our quadrupedal robot ANYmal with a variety of simulated and real-world experiments. We show that our method can cope with stairs and obstacles of heights up to 33% of the robot's leg length.

BibTeX
@inproceedings{ral2020_perceptivelocomo,
  title = {Perceptive Locomotion in Rough Terrain - Online Foothold Optimization},
  author = {Fabian Jenelten and Takahiro Miki and Aravind Elanjimattathil Vijayan and Marko Bjelonic and Marco Hutter},
  booktitle = {RA-L 2020},
  year = {2020}
}