Model-free reinforcement learning for robust locomotion using demonstrations from trajectory optimization
Miroslav Bogdanovic1, Majid Khadiv1, Ludovic Righetti1,2
1Movement Generation and Control Group, Max Planck Institute for Intelligent Systems, Tübingen, Germany.
Abstract:
We present a general, two-stage reinforcement learning approach to create robust policies that can be deployed on real robots without any additional training using a single demonstration generated by trajectory optimization. The demonstration is used in the first stage as a starting point to facilitate initial exploration. In the second stage, the relevant task reward is optimized directly and a policy robust to environment uncertainties is computed. We demonstrate and examine in detail the performance and robustness of our approach on highly dynamic hopping and bounding tasks on a quadruped robot.
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