English

Fast Non-Episodic Finite-Horizon RL with K-Step Lookahead Thresholding

Machine Learning 2026-02-03 v1 Machine Learning

Abstract

Online reinforcement learning in non-episodic, finite-horizon MDPs remains underexplored and is challenged by the need to estimate returns to a fixed terminal time. Existing infinite-horizon methods, which often rely on discounted contraction, do not naturally account for this fixed-horizon structure. We introduce a modified Q-function: rather than targeting the full-horizon, we learn a K-step lookahead Q-function that truncates planning to the next K steps. To further improve sample efficiency, we introduce a thresholding mechanism: actions are selected only when their estimated K-step lookahead value exceeds a time-varying threshold. We provide an efficient tabular learning algorithm for this novel objective, proving it achieves fast finite-sample convergence: it achieves minimax optimal constant regret for K=1K=1 and O(max((K1),CK1)SATlog(T))\mathcal{O}(\max((K-1),C_{K-1})\sqrt{SAT\log(T)}) regret for any K2K \geq 2. We numerically evaluate the performance of our algorithm under the objective of maximizing reward. Our implementation adaptively increases K over time, balancing lookahead depth against estimation variance. Empirical results demonstrate superior cumulative rewards over state-of-the-art tabular RL methods across synthetic MDPs and RL environments: JumpRiverswim, FrozenLake and AnyTrading.

Keywords

Cite

@article{arxiv.2602.00781,
  title  = {Fast Non-Episodic Finite-Horizon RL with K-Step Lookahead Thresholding},
  author = {Jiamin Xu and Kyra Gan},
  journal= {arXiv preprint arXiv:2602.00781},
  year   = {2026}
}