Fast Active Learning for Pure Exploration in Reinforcement Learning

Abstract

Realistic environments often provide agents with very limited feedback. When the environment is initially unknown, the feedback, in the beginning, can be completely absent, and the agents may first choose to devote all their effort on \emph{exploring efficiently.} The exploration remains a challenge while it has been addressed with many hand-tuned heuristics with different levels of generality on one side, and a few theoretically-backed exploration strategies on the other. Many of them are incarnated by \emph{intrinsic motivation} and in particular \emph{explorations bonuses}. A common choice is to use $1/\sqrt{n}$ bonus, where $n$ is a number of times this particular state-action pair was visited. We show that, surprisingly, for a pure-exploration objective of \emph{reward-free exploration}, bonuses that scale with $1/n$ bring faster learning rates, improving the known upper bounds with respect to the dependence on the horizon $H$. Furthermore, we show that with an improved analysis of the stopping time, we can improve by a factor $H$ the sample complexity in the \emph{best-policy identification} setting, which is another pure-exploration objective, where the environment provides rewards but the agent is not penalized for its behavior during the exploration phase.

Cite

Text

Menard et al. "Fast Active Learning for Pure Exploration in Reinforcement Learning." International Conference on Machine Learning, 2021.

Markdown

[Menard et al. "Fast Active Learning for Pure Exploration in Reinforcement Learning." International Conference on Machine Learning, 2021.](https://mlanthology.org/icml/2021/menard2021icml-fast/)

BibTeX

@inproceedings{menard2021icml-fast,
  title     = {{Fast Active Learning for Pure Exploration in Reinforcement Learning}},
  author    = {Menard, Pierre and Domingues, Omar Darwiche and Jonsson, Anders and Kaufmann, Emilie and Leurent, Edouard and Valko, Michal},
  booktitle = {International Conference on Machine Learning},
  year      = {2021},
  pages     = {7599-7608},
  volume    = {139},
  url       = {https://mlanthology.org/icml/2021/menard2021icml-fast/}
}