Communicating sequential processes
Communicating sequential processes
Symbolic model checking using SAT procedures instead of BDDs
Proceedings of the 36th annual ACM/IEEE Design Automation Conference
Model checking
Towards Bounded Model Checking for the Universal Fragment of TCTL
FTRTFT '02 Proceedings of the 7th International Symposium on Formal Techniques in Real-Time and Fault-Tolerant Systems: Co-sponsored by IFIP WG 2.2
CAV '01 Proceedings of the 13th International Conference on Computer Aided Verification
Advances in Verification of Time Petri Nets and Timed Automata: A Temporal Logic Approach (Studies in Computational Intelligence)
√erics: a tool for verifying timed automata and estelle specifications
TACAS'03 Proceedings of the 9th international conference on Tools and algorithms for the construction and analysis of systems
A new approach to bounded model checking for branching time logics
ATVA'07 Proceedings of the 5th international conference on Automated technology for verification and analysis
Bounded Model Checking for the Existential Fragment of TCTL$_{-G}$ and Diagonal Timed Automata
Fundamenta Informaticae
SAT-Based Reachability Checking for Timed Automata with Discrete Data
Fundamenta Informaticae - Special Issue on Concurrency Specification and Programming (CS&P)
Improvements in SAT-based Reachability Analysis for Timed Automata
Fundamenta Informaticae - Concurrency Specification and Programming (CS&P 2003)
ACTLS properties and Bounded Model Checking
Fundamenta Informaticae
Bounded Model Checking for the Universal Fragment of CTL
Fundamenta Informaticae - Concurrency Specification and Programming Workshop (CS&P'2001)
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The objective of this paper is to offer an improvement to the translation from ECTL to SAT introduced in [14] and show that the improvement proposed substantially increases the efficiency of verifying temporal properties using the Bounded Model Checking method. We have implemented our new translation and made preliminary experimental results, which demonstrate the efficiency of the method.