IROS 2022poster7 citations

Controlling the Cascade: Kinematic Planning for N-ball Toss Juggling

Kai Ploeger, Jan Peters

Abstract

Dynamic movements are ubiquitous in human motor behavior as they tend to be more efficient and can solve a broader range of skill domains than their quasi-static counterparts. For decades, robotic juggling tasks have been among the most frequently studied dynamic manipulation problems since the required dynamic dexterity can be scaled to arbitrarily high difficulty. However, successful approaches have been limited to basic juggling skills, indicating a lack of understanding of the required constraints for dexterous toss juggling. We present a detailed analysis of the toss juggling task, identifying the key challenges of the switching contacts task and formalizing it as a trajectory optimization problem. Building on our state-of-the-art, real-world toss juggling platform, we reach the theoretical limits of toss juggling in simulation, evaluate a resulting real-time controller in environments of varying difficulty and achieve robust toss juggling of up to 17 balls on two anthropomorphic manipulators. https://sites.google.com/view/controlling-the-cascade

BibTeX
@inproceedings{iros2022_controllingtheca,
  title = {Controlling the Cascade: Kinematic Planning for N-ball Toss Juggling},
  author = {Kai Ploeger and Jan Peters},
  booktitle = {IROS 2022},
  year = {2022}
}
Controlling the Cascade: Kinematic Planning for N-ball Toss Juggling · IROS 2022