AbstractThe use of deductive techniques, such as theorem provers, has several advantages in safety verification of hybrid systems. There is often a gap, however, between the type of assistance that a theorem prover requires to make progress on a proof task and the assistance that a system designer is able to provide. To address this deficiency we present an extension to the deductive verification framework of differential dynamic logic that allows the theorem prover KeYmaera to locally reason about behaviors by leveraging forward invariant sets provided by external methods, such as numerical techniques and designer insights. Our key contribution is a new inference rule, the forward invariant cut rule, introduced into the proof calculus of K...
The design of hybrid systems controllers requires one to handle both discrete and continuous functio...
. We investigate the feasibility of computer-aided deductive verification of hybrid systems. Hybrid ...
We have developed a hybrid system safety prover, implemented in Coq using the abstraction method int...
AbstractThe use of deductive techniques, such as theorem provers, has several advantages in safety v...
This paper presents a new approach for leveraging the power of theorem provers for formal verificati...
Abstract — This paper presents a new approach for leveraging the power of theorem provers for formal...
This thesis aims at the computer aided verification of hybrid systems using deductive techniques. We...
We introduce a first-order dynamic logic for reasoning about systems with discrete and continuous st...
Modern computer-controlled systems deployed for safety-critical applicationsare growing increasingly...
The challenges in providing convincing arguments for safe and correct behavior of automated driving ...
Formal verification techniques are used routinely in finite-state digital circuits. Theorem proving ...
Abstract: "We introduce a fixedpoint algorithm for verifying safety properties of hybrid systems wit...
Cyber-physical systems are often safety-critical and their correctness is crucial, as in the case of...
We introduce a fixedpoint algorithm for verifying safety properties of hybrid systems with different...
International audienceFor many years, automotive embedded systems have been validated only by testin...
The design of hybrid systems controllers requires one to handle both discrete and continuous functio...
. We investigate the feasibility of computer-aided deductive verification of hybrid systems. Hybrid ...
We have developed a hybrid system safety prover, implemented in Coq using the abstraction method int...
AbstractThe use of deductive techniques, such as theorem provers, has several advantages in safety v...
This paper presents a new approach for leveraging the power of theorem provers for formal verificati...
Abstract — This paper presents a new approach for leveraging the power of theorem provers for formal...
This thesis aims at the computer aided verification of hybrid systems using deductive techniques. We...
We introduce a first-order dynamic logic for reasoning about systems with discrete and continuous st...
Modern computer-controlled systems deployed for safety-critical applicationsare growing increasingly...
The challenges in providing convincing arguments for safe and correct behavior of automated driving ...
Formal verification techniques are used routinely in finite-state digital circuits. Theorem proving ...
Abstract: "We introduce a fixedpoint algorithm for verifying safety properties of hybrid systems wit...
Cyber-physical systems are often safety-critical and their correctness is crucial, as in the case of...
We introduce a fixedpoint algorithm for verifying safety properties of hybrid systems with different...
International audienceFor many years, automotive embedded systems have been validated only by testin...
The design of hybrid systems controllers requires one to handle both discrete and continuous functio...
. We investigate the feasibility of computer-aided deductive verification of hybrid systems. Hybrid ...
We have developed a hybrid system safety prover, implemented in Coq using the abstraction method int...