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ICML2023顶会

Fast Rates for Maximum Entropy Exploration

Daniil Tiapkin, Denis Belomestny, Daniele Calandriello, Eric Moulines, Rémi Munos, Alexey Naumov, Pierre Perrault, Yunhao Tang, Michal Valko, Pierre Ménard

2023年份
34被引次数
16顶会引用

摘要

We address the challenge of exploration in reinforcement learning (RL) when the agent operates in an unknown environment with sparse or no rewards. In this work, we study the maximum entropy exploration problem of two different types. The first type is visitation entropy maximization previously considered by Hazan et al.(2019) in the discounted setting. For this type of exploration, we propose a game-theoretic algorithm that has O~(H3S2A/ε2)\widetilde{\mathcal{O}}(H^3S^2A/\varepsilon^2) sample complexity thus improving the ε\varepsilon-dependence upon existing results, where SS is a number of states, AA is a number of actions, HH is an episode length, and ε\varepsilon is a desired accuracy. The second type of entropy we study is the trajectory entropy. This objective function is closely related to the entropy-regularized MDPs, and we propose a simple algorithm that has a sample complexity of order O~(poly(S,A,H)/ε)\widetilde{\mathcal{O}}(\mathrm{poly}(S,A,H)/\varepsilon). Interestingly, it is the first theoretical result in RL literature that establishes the potential statistical advantage of regularized MDPs for exploration. Finally, we apply developed regularization techniques to reduce sample complexity of visitation entropy maximization to O~(H2SA/ε2)\widetilde{\mathcal{O}}(H^2SA/\varepsilon^2), yielding a statistical separation between maximum entropy exploration and reward-free exploration.

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