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Reward-Adaptive Iterative Discovery: A Case Study on Automated Game Testing for NHL26

Machine Learning 2026-07-08 v1 Artificial Intelligence

Abstract

Testing is a major effort for the gaming industry, requiring a significant part of development budget and people power. We present a case study on a development version of the ice hockey game EA SPORTS NHL 26, for which human playtesters test the goalie AI for behavioral exploits. To reduce the effort of re-testing the goalie AI after every game or behavior modification in the development phase, we propose Reward-Adaptive Iterative Discovery (RAID), a novel approach to automatically find exploits using an iterative Reinforcement Learning (RL) approach that trains a population of goal scoring agents. While previous approaches can already successfully find exploits, RL algorithms tend to overfit to a single solution. We introduce a simple extension on top of existing RL algorithms, such that they find multiple diverse high-quality solutions. For our first deployment of this approach, within a single experiment we were able to find six hockey scoring exploit strategies that were qualitatively similar to those that playtesters had found in hours-long manual testing sessions.

Keywords

Cite

@article{arxiv.2607.07498,
  title  = {Reward-Adaptive Iterative Discovery: A Case Study on Automated Game Testing for NHL26},
  author = {Florian Fuchs and Jessy Gosselin-Grant and Boris Skuin and Michele Petteni and Alessandro Sestini and Joakim Bergdahl and Amir Baghi and Linus Gisslén},
  journal= {arXiv preprint arXiv:2607.07498},
  year   = {2026}
}

Comments

Reinforcement Learning Conference - Reinforcement Learning and Video Games Workshop 2026