Whole-Body Control of a Mobile Manipulator using End-to-End Reinforcement Learning
February 25, 2020 Β· Declared Dead Β· π arXiv.org
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Authors
Julien Kindle, Fadri Furrer, Tonci Novkovic, Jen Jen Chung, Roland Siegwart, Juan Nieto
arXiv ID
2003.02637
Category
cs.RO: Robotics
Cross-listed
cs.LG
Citations
34
Venue
arXiv.org
Last Checked
6 months ago
Abstract
Mobile manipulation is usually achieved by sequentially executing base and manipulator movements. This simplification, however, leads to a loss in efficiency and in some cases a reduction of workspace size. Even though different methods have been proposed to solve Whole-Body Control (WBC) online, they are either limited by a kinematic model or do not allow for reactive, online obstacle avoidance. In order to overcome these drawbacks, in this work, we propose an end-to-end Reinforcement Learning (RL) approach to WBC. We compared our learned controller against a state-of-the-art sampling-based method in simulation and achieved faster overall mission times. In addition, we validated the learned policy on our mobile manipulator RoyalPanda in challenging narrow corridor environments.
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