Arrow Research search
Back to TIME

TIME 2020

Parametric Model Checking Continuous-Time Markov Chains

Conference Paper Accepted Paper Logic in Computer Science · Temporal Reasoning

Abstract

CSL is a well-known temporal logic for specifying properties of real-time stochastic systems, such as continuous-time Markov chains. We introduce PCSL, an extension of CSL that allows using existentially quantified parameters in timing constraints, and investigate its expressiveness and decidability over properties of continuous-time Markov chains. Assuming Schanuel’s Conjecture, we prove the decidability of model checking the one-parameter fragment of PCSL on continuous-time Markov chains. Technically, the central problem we solve (relying on Schanuel’s Conjecture) is to decide positivity of real-valued exponential polynomial functions on bounded intervals. A second contribution is to give a reduction of the Positivity Problem for matrix exponentials to the PCSL model checking problem, suggesting that it will be difficult to give an unconditional proof of the decidability of model checking PCSL.

Authors

Keywords

  • Probabilistic Continuous Stochastic Logic
  • Continuous-time Markov Chains
  • model checking
  • Schanuel’s Conjecture
  • positivity problem

Context

Venue
International Symposium on Temporal Representation and Reasoning
Archive span
1994-2025
Indexed papers
711
Paper id
576142533028694481
v2026.09.13