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Efficient Reinforcement Learning in Block MDPs: A Model-free Representation Learning Approach

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arxiv 2202.00063 v3 pith:RJAFU7QO submitted 2022-01-31 cs.LG cs.AI

Efficient Reinforcement Learning in Block MDPs: A Model-free Representation Learning Approach

classification cs.LG cs.AI
keywords learningblockbrieeefficientlatentstatesalgorithmblock-structured
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We present BRIEE (Block-structured Representation learning with Interleaved Explore Exploit), an algorithm for efficient reinforcement learning in Markov Decision Processes with block-structured dynamics (i.e., Block MDPs), where rich observations are generated from a set of unknown latent states. BRIEE interleaves latent states discovery, exploration, and exploitation together, and can provably learn a near-optimal policy with sample complexity scaling polynomially in the number of latent states, actions, and the time horizon, with no dependence on the size of the potentially infinite observation space. Empirically, we show that BRIEE is more sample efficient than the state-of-art Block MDP algorithm HOMER and other empirical RL baselines on challenging rich-observation combination lock problems that require deep exploration.

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  1. Breaking the Computational Barrier: Provably Efficient Actor-Critic for Low-Rank MDPs

    cs.LG 2026-05 unverdicted novelty 6.0

    An actor-critic RL algorithm for low-rank MDPs achieves improved sample efficiency using solely a policy evaluation oracle.