English

IQ-Learn: Inverse soft-Q Learning for Imitation

Machine Learning 2022-11-04 v4 Artificial Intelligence

Abstract

In many sequential decision-making problems (e.g., robotics control, game playing, sequential prediction), human or expert data is available containing useful information about the task. However, imitation learning (IL) from a small amount of expert data can be challenging in high-dimensional environments with complex dynamics. Behavioral cloning is a simple method that is widely used due to its simplicity of implementation and stable convergence but doesn't utilize any information involving the environment's dynamics. Many existing methods that exploit dynamics information are difficult to train in practice due to an adversarial optimization process over reward and policy approximators or biased, high variance gradient estimators. We introduce a method for dynamics-aware IL which avoids adversarial training by learning a single Q-function, implicitly representing both reward and policy. On standard benchmarks, the implicitly learned rewards show a high positive correlation with the ground-truth rewards, illustrating our method can also be used for inverse reinforcement learning (IRL). Our method, Inverse soft-Q learning (IQ-Learn) obtains state-of-the-art results in offline and online imitation learning settings, significantly outperforming existing methods both in the number of required environment interactions and scalability in high-dimensional spaces, often by more than 3x.

Keywords

Cite

@article{arxiv.2106.12142,
  title  = {IQ-Learn: Inverse soft-Q Learning for Imitation},
  author = {Divyansh Garg and Shuvam Chakraborty and Chris Cundy and Jiaming Song and Matthieu Geist and Stefano Ermon},
  journal= {arXiv preprint arXiv:2106.12142},
  year   = {2022}
}

Comments

Spotlight in NeurIPS 2021. Winner of '21 MineRL BASALT Challenge. Website: https://div99.github.io/IQ-Learn

R2 v1 2026-06-24T03:29:36.369Z