Expressive Temporal Specifications for Reward Monitoring

Authors

  • Omar Adalat Imperial College London
  • Francesco Belardinelli Imperial College London

DOI:

https://doi.org/10.1609/aaai.v40i24.39032

Abstract

Specifying informative and dense reward functions remains a pivotal challenge in Reinforcement Learning, as it directly affects the efficiency of agent training. In this work, we harness the expressive power of quantitative Linear Temporal Logic on finite traces to synthesize reward monitors that generate a dense stream of rewards for runtime-observable state trajectories. By providing nuanced feedback during training, these monitors guide agents toward optimal behaviour and help mitigate the well-known issue of sparse rewards under long-horizon decision making, which arises under the Boolean semantics dominating the current literature. Our framework is algorithm-agnostic and only relies on a state labelling function, and naturally accommodates specifying non-Markovian properties. Empirical results show that our quantitative monitors consistently subsume and, depending on the environment, outperform Boolean monitors in maximizing a quantitative measure of task completion and in reducing convergence time.

Published

2026-03-14

How to Cite

Adalat, O., & Belardinelli, F. (2026). Expressive Temporal Specifications for Reward Monitoring. Proceedings of the AAAI Conference on Artificial Intelligence, 40(24), 19533–19541. https://doi.org/10.1609/aaai.v40i24.39032

Issue

Section

AAAI Technical Track on Machine Learning I