Papers › Robust Inverse Reinforcement Learning under Transition Dynamics Mismatch

Robust Inverse Reinforcement Learning under Transition Dynamics Mismatch

2 Jul 2020NeurIPS 2021 12arXiv:2007.01174archive 2025-07-28

Luca Viano, Yu-Ting Huang, Parameswaran Kamalaruban, Adrian Weller, Volkan Cevher

We study the inverse reinforcement learning (IRL) problem under a transition dynamics mismatch between the expert and the learner. Specifically, we consider the Maximum Causal Entropy (MCE) IRL learner model and provide a tight upper bound on the learner's performance degradation based on the ℓ₁-distance between the transition dynamics of the expert and the learner. Leveraging insights from the Robust RL literature, we propose a robust MCE IRL algorithm, which is a principled approach to help with this mismatch. Finally, we empirically demonstrate the stable performance of our algorithm compared to the standard MCE IRL algorithm under transition dynamics mismatches in both finite and continuous MDP problems.

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Reinforcement LearningReinforcement Learning (RL)reinforcement-learning

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