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Reinforcement and Imitation Learning for Diverse Visuomotor Skills

26 February 2018
Yuke Zhu
Ziyun Wang
J. Merel
Andrei A. Rusu
Tom Erez
Serkan Cabi
S. Tunyasuvunakool
János Kramár
R. Hadsell
Nando de Freitas
N. Heess
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Abstract

We propose a model-free deep reinforcement learning method that leverages a small amount of demonstration data to assist a reinforcement learning agent. We apply this approach to robotic manipulation tasks and train end-to-end visuomotor policies that map directly from RGB camera inputs to joint velocities. We demonstrate that our approach can solve a wide variety of visuomotor tasks, for which engineering a scripted controller would be laborious. In experiments, our reinforcement and imitation agent achieves significantly better performances than agents trained with reinforcement learning or imitation learning alone. We also illustrate that these policies, trained with large visual and dynamics variations, can achieve preliminary successes in zero-shot sim2real transfer. A brief visual description of this work can be viewed in https://youtu.be/EDl8SQUNjj0

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