AbstractIn this work we discuss the problem of performing distributed CTL model checking by splitting the given state space into several “partial state spaces” . The partial state space is modelled as a Kripke structure with border states. Each computer involved in the distributed computation owns a partial state space and performs a model checking algorithm on this incomplete structure. To be able to proceed, the border states are augmented by assumptions about the truth of formulas and the computers exchange assumptions about relevant states as they compute more precise information. In the paper we give the basic definitions and present the distributed algorithm
Model checking is a powerful approach to verification of distributed systems. The sweep-line method ...
In the model checking context, the method used to detect stable properties is to construct the synch...
Abstract—The recent extensive availability of “big data” platforms calls for a more widespread adopt...
AbstractIn this paper we present algorithms for model checking CTL over systems specified as Petri n...
The recent extensive availability of 'cloud' computing platforms is very appealing for the formal ve...
AbstractIn this work we extend the approach used in [6] to perform distributed-memory AFMC model che...
International audienceWe propose a parallel algorithm for local, on the fly, model checking of a fra...
International audienceWe propose a parallel algorithm for local, on the fly, model checking of a fra...
The recent extensive availability of 'big data' platforms calls for a widespread adoption by the for...
AbstractWe aim at improving the performance of distributed algorithms for model checking and state s...
AbstractThe verification of quantitative aspects like performance and dependability by means of mode...
We aim at improving the performance of distributed algorithms for model checking and state space red...
We aim at improving the performance of distributed algorithms for model checking and state space red...
AbstractIn this paper we present algorithms for model checking CTL over systems specified as Petri n...
Abstract—Explicit model-checking (MC) is a classical so-lution to find flaws in a security protocol....
Model checking is a powerful approach to verification of distributed systems. The sweep-line method ...
In the model checking context, the method used to detect stable properties is to construct the synch...
Abstract—The recent extensive availability of “big data” platforms calls for a more widespread adopt...
AbstractIn this paper we present algorithms for model checking CTL over systems specified as Petri n...
The recent extensive availability of 'cloud' computing platforms is very appealing for the formal ve...
AbstractIn this work we extend the approach used in [6] to perform distributed-memory AFMC model che...
International audienceWe propose a parallel algorithm for local, on the fly, model checking of a fra...
International audienceWe propose a parallel algorithm for local, on the fly, model checking of a fra...
The recent extensive availability of 'big data' platforms calls for a widespread adoption by the for...
AbstractWe aim at improving the performance of distributed algorithms for model checking and state s...
AbstractThe verification of quantitative aspects like performance and dependability by means of mode...
We aim at improving the performance of distributed algorithms for model checking and state space red...
We aim at improving the performance of distributed algorithms for model checking and state space red...
AbstractIn this paper we present algorithms for model checking CTL over systems specified as Petri n...
Abstract—Explicit model-checking (MC) is a classical so-lution to find flaws in a security protocol....
Model checking is a powerful approach to verification of distributed systems. The sweep-line method ...
In the model checking context, the method used to detect stable properties is to construct the synch...
Abstract—The recent extensive availability of “big data” platforms calls for a more widespread adopt...