Lune

ICML2021Top-tier venue

Near Optimal Reward-Free Reinforcement Learning

Zihan Zhang, Simon S. Du, Xiangyang Ji

2021Year
15Citations
12Top-tier citations

Abstract

We study the reward-free reinforcement learning framework, which is particularly suitable for batch reinforcement learning and scenarios where one needs policies for multiple reward functions. This framework has two phases: in the exploration phase, the agent collects trajectories by interacting with the environment without using any reward signal; in the planning phase, the agent needs to return a near-optimal policy for arbitrary reward functions. We give a new efficient algorithm, Staged Sampling + Truncated Planning (SSTP), which interacts with the environment at most O

episodes in the exploration phase, and guarantees to output a nearoptimal policy for arbitrary reward functions in the planning phase, where S is the size of state space, A is the size of action space, H is the planning horizon, and ✏ is the target accuracy relative to the total reward. Notably, our sample complexity scales only logarithmically with H, in contrast to all existing results which scale polynomially with H. Furthermore, this bound matches the minimax lower bound ⌦ ⇣ S 2 A ✏ 2 ⌘ up to logarithmic factors. Our results rely on three new techniques : 1) A new sufficient condition for the dataset to plan for an ✏-suboptimal policy ; 2) A new way to plan efficiently under the proposed condition using soft-truncated planning; 3) Constructing extended MDP to maximize the truncated accumulative rewards efficiently.

Ask about this paper

Your agent reads all of it.

Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.

Questions to start from

Your agent calls

Luneget_paper_fulltext

Ask in Lune

Free to start. No credit card required.

lune papers fulltext 879ab019-7e3d-49f9-bae6-9e9e8befbb9a

Cited by top-tier papers12

Ask how each one uses it

Builds on8

Related papers

Dusk over the sea between two cliffs drawn in fine vertical lines