Synthesis of Safety Specifications for Probabilistic Systems
Abstract
Ensuring that agents satisfy safety specifications can be crucial in safety-critical environments. While methods exist for controller synthesis with safe temporal specifications, most existing methods restrict safe temporal specifications to probabilistic-avoidance constraints. Formal methods typically offer more expressive ways to express safety in probabilistic systems, such as Probabilistic Computation Tree Logic (PCTL) formulas. Thus, in this paper, we develop a new approach that supports more general temporal properties expressed in PCTL. Our contribution is twofold. First, we develop a theoretical framework for the Synthesis of safe-PCTL specifications. We show how the reducing global specification satisfaction to local constraints, and define CPCTL, a fragment of safe-PCTL. We demonstrate how the expressiveness of CPCTL makes it a relevant fragment for the Synthesis Problem. Second, we leverage these results and propose a new Value Iteration-based algorithm to solve the synthesis problem for these more general temporal properties, and we prove the soundness and completeness of our method.
Cite
@article{arxiv.2511.16579,
title = {Synthesis of Safety Specifications for Probabilistic Systems},
author = {Gaspard Ohlmann and Edwin Hamel-De le Court and Francesco Belardinelli},
journal= {arXiv preprint arXiv:2511.16579},
year = {2025}
}
Comments
23 pages