AbstractWe extend the approach of model checking parameterized networks of processes by means of network invariants to the setting of real-time systems. We introduce timed transition structures (which are similar in spirit to timed automata) and define a notion of abstraction which is safe with respect to linear temporal properties. We strengthen the notion of abstraction to allow a finite system, then called network invariant, to be an abstraction of networks of real-time systems. In general the problem of checking abstraction of real-time systems is undecidable. Hence, we provide sufficient criteria, which can be checked automatically, to conclude that one system is an abstraction of a concrete one. Our method is based on timed superposit...
International audienceThis chapter surveys timed automata as a formalism for model checking real-tim...
AbstractWe propose a format of predicate diagrams for the verification of real-time systems. We cons...
http://www.win.tue.nl/~jromijn/Our research focuses on verification techniques for real-time systems...
AbstractWe extend the approach of model checking parameterized networks of processes by means of net...
AbstractOver the last years there has been an increasing research effort directed towards the automa...
ion and Regular Languages ? E. M. Clarke 1 and O. Grumberg 2 and S. Jha 1 1 Carnegie Mellon U...
We present a technique designed to automatically compute predicate abstractions for dense real-timed...
Formal methods are mathematical techniques that enable the rigorous specification and verification o...
AbstractThis paper describes a method to verify safety properties of parameterized networks of proce...
Parameterized model checking is a formal verification technique for verifying that some specificatio...
AbstractIn this paper, we present several timed extensions of temporal logics, that can be used for ...
AbstractIn this paper we are interested in the verification of safety properties of parameterized ne...
AbstractWe consider verification of safety properties for parameterized systems of timed processes, ...
We propose predicate abstraction as a means for verifying a rich class of safety and liveness proper...
We present an algorithm that generates invariants for real-time models. The algorithm, further, prun...
International audienceThis chapter surveys timed automata as a formalism for model checking real-tim...
AbstractWe propose a format of predicate diagrams for the verification of real-time systems. We cons...
http://www.win.tue.nl/~jromijn/Our research focuses on verification techniques for real-time systems...
AbstractWe extend the approach of model checking parameterized networks of processes by means of net...
AbstractOver the last years there has been an increasing research effort directed towards the automa...
ion and Regular Languages ? E. M. Clarke 1 and O. Grumberg 2 and S. Jha 1 1 Carnegie Mellon U...
We present a technique designed to automatically compute predicate abstractions for dense real-timed...
Formal methods are mathematical techniques that enable the rigorous specification and verification o...
AbstractThis paper describes a method to verify safety properties of parameterized networks of proce...
Parameterized model checking is a formal verification technique for verifying that some specificatio...
AbstractIn this paper, we present several timed extensions of temporal logics, that can be used for ...
AbstractIn this paper we are interested in the verification of safety properties of parameterized ne...
AbstractWe consider verification of safety properties for parameterized systems of timed processes, ...
We propose predicate abstraction as a means for verifying a rich class of safety and liveness proper...
We present an algorithm that generates invariants for real-time models. The algorithm, further, prun...
International audienceThis chapter surveys timed automata as a formalism for model checking real-tim...
AbstractWe propose a format of predicate diagrams for the verification of real-time systems. We cons...
http://www.win.tue.nl/~jromijn/Our research focuses on verification techniques for real-time systems...