Papers › TransDreamer: Reinforcement Learning with Transformer World Models

TransDreamer: Reinforcement Learning with Transformer World Models

19 Feb 2022arXiv:2202.09481archive 2025-07-28

Chang Chen, Yi-Fu Wu, Jaesik Yoon, Sungjin Ahn

The Dreamer agent provides various benefits of Model-Based Reinforcement Learning (MBRL) such as sample efficiency, reusable knowledge, and safe planning. However, its world model and policy networks inherit the limitations of recurrent neural networks and thus an important question is how an MBRL framework can benefit from the recent advances of transformers and what the challenges are in doing so. In this paper, we propose a transformer-based MBRL agent, called TransDreamer. We first introduce the Transformer State-Space Model, a world model that leverages a transformer for dynamics predictions. We then share this world model with a transformer-based policy network and obtain stability in training a transformer-based RL agent. In experiments, we apply the proposed model to 2D visual RL and 3D first-person visual RL tasks both requiring long-range memory access for memory-based reasoning. We show that the proposed model outperforms Dreamer in these complex tasks.

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Model-based Reinforcement LearningReinforcement LearningReinforcement Learning (RL)reinforcement-learning

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