Papers › Safe Reinforcement Learning via Probabilistic Logic Shields

Safe Reinforcement Learning via Probabilistic Logic Shields

6 Mar 2023arXiv:2303.03226archive 2025-07-28

Wen-Chi Yang, Giuseppe Marra, Gavin Rens, Luc De Raedt

Safe Reinforcement learning (Safe RL) aims at learning optimal policies while staying safe. A popular solution to Safe RL is shielding, which uses a logical safety specification to prevent an RL agent from taking unsafe actions. However, traditional shielding techniques are difficult to integrate with continuous, end-to-end deep RL methods. To this end, we introduce Probabilistic Logic Policy Gradient (PLPG). PLPG is a model-based Safe RL technique that uses probabilistic logic programming to model logical safety constraints as differentiable functions. Therefore, PLPG can be seamlessly applied to any policy gradient algorithm while still providing the same convergence guarantees. In our experiments, we show that PLPG learns safer and more rewarding policies compared to other state-of-the-art shielding techniques.

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cast_to_compute sacktock/ambs/dreamerV3-base/jaxutils.py community (archive-listed) ran MIT (permissive) · 24fe13b4f847da6b · report
pure sacktock/ambs/dreamerV3-base/ninjax.py community (archive-listed) ran MIT (permissive) · bbd25fa32893729e · report
get_act sacktock/ambs/dreamerV3-base/nets.py community (archive-listed) unverified MIT (permissive) · 03dd934385b4d240 · report
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Reinforcement LearningReinforcement Learning (RL)Safe Reinforcement Learningreinforcement-learning

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