English

Bottom-Up Skill Discovery from Unsegmented Demonstrations for Long-Horizon Robot Manipulation

Robotics 2022-01-25 v2 Machine Learning

Abstract

We tackle real-world long-horizon robot manipulation tasks through skill discovery. We present a bottom-up approach to learning a library of reusable skills from unsegmented demonstrations and use these skills to synthesize prolonged robot behaviors. Our method starts with constructing a hierarchical task structure from each demonstration through agglomerative clustering. From the task structures of multi-task demonstrations, we identify skills based on the recurring patterns and train goal-conditioned sensorimotor policies with hierarchical imitation learning. Finally, we train a meta controller to compose these skills to solve long-horizon manipulation tasks. The entire model can be trained on a small set of human demonstrations collected within 30 minutes without further annotations, making it amendable to real-world deployment. We systematically evaluated our method in simulation environments and on a real robot. Our method has shown superior performance over state-of-the-art imitation learning methods in multi-stage manipulation tasks. Furthermore, skills discovered from multi-task demonstrations boost the average task success by 8%8\% compared to those discovered from individual tasks.

Keywords

Cite

@article{arxiv.2109.13841,
  title  = {Bottom-Up Skill Discovery from Unsegmented Demonstrations for Long-Horizon Robot Manipulation},
  author = {Yifeng Zhu and Peter Stone and Yuke Zhu},
  journal= {arXiv preprint arXiv:2109.13841},
  year   = {2022}
}

Comments

Accepted to IEEE RA-Letter, 2022

R2 v1 2026-06-24T06:26:49.070Z