Paper Detail

Proactive Context-Forecasted Safety Constraints for Nonstationary Reinforcement Learning

Tim Tomashevskiy

arxiv Score 11.2

Published 2026-09-08 · First seen 2026-09-09

General AI

Abstract

Ensuring safety in reinforcement learning under nonstationarity requires anticipating changes in risk before they lead to unsafe behavior. Existing approaches typically rely on safety constraints defined at design time or updated reactively during execution, assuming that such constraints remain valid over time. However, in nonstationary environments with evolving contexts and changing driving layouts, these assumptions may fail. We propose a framework for proactive safety constraint generation based on context forecasting. The approach infers latent environmental context from observations, predicts its future evolution, and constructs safety constraints adapted to anticipated conditions. This enables the agent to proactively avoid unsafe regions instead of reacting only after safety violations occur. We evaluate the method in driving environments with structured context variation. The experiments include a sweep over nonstationarity intensities and additional held-out driving layouts, including highway, intersection, and racetrack scenarios. Results show that proactive constraint generation substantially reduces collisions under both seen and out-of-training nonstationarity intensities and generally remains effective across held-out driving layouts while maintaining usable task performance. These findings suggest that context-based constraint generation is a promising approach for safe reinforcement learning under nonstationarity.

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BibTeX

@article{tomashevskiy2026proactive,
  title = {Proactive Context-Forecasted Safety Constraints for Nonstationary Reinforcement Learning},
  author = {Tim Tomashevskiy},
  year = {2026},
  abstract = {Ensuring safety in reinforcement learning under nonstationarity requires anticipating changes in risk before they lead to unsafe behavior. Existing approaches typically rely on safety constraints defined at design time or updated reactively during execution, assuming that such constraints remain valid over time. However, in nonstationary environments with evolving contexts and changing driving layouts, these assumptions may fail. We propose a framework for proactive safety constraint generation },
  url = {https://arxiv.org/abs/2609.08080},
  keywords = {cs.LG},
  eprint = {2609.08080},
  archiveprefix = {arXiv},
}

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