Abstract Isabelle/SACM is a tool for automated construction of model-based assurance cases with integrated formal methods, based on the Isabelle proof assistant. Assurance cases show how a system is safe to operate, through a human comprehensible argument demonstrating that the requirements are satisfied, using evidence of various provenances. They are usually required for certification of critical systems, often with evidence that originates from formal methods. Automating assurance cases increases rigour, and helps with maintenance and evolution. In this paper we apply Isabelle/SACM to a fragment of the assurance case for an autonomous underwater vehicle demonstrator. We encode the metric unit system (SI) in Isabelle, to allow modelling ...
We present the generic system framework of Isabelle/Isar underlying recent versions of Isabelle. Amo...
In this paper we describe how the automated instantiation of assurance case arguments will require i...
In this paper, we outline our vision for building verification tools for Cyber-Physical Systems base...
Isabelle/SACM is a tool for automated construction of model-based assurance cases with integrated fo...
This report contains supplemental material for the paper Evolution of Formal Model-based Assurance C...
Assurance cases are often required to certify critical systems. The use of formal methods in assuran...
Assurance cases (ACs) are often required to certify critical systems. The use of integrated formal m...
Security modeling is the foundation to formal verification which is a core requirement for high ass...
RoboChart is a graphical language for model-based engineering of robotic systems, in the style of UM...
The growing complexity and diversity of models used for engineering dependable systems implies that ...
Abstract. We describe results and status of a sub project of the Verisoft [1] project. While the Ver...
In this paper, we propose the use of interactive the- orem proving for explainable machine learning....
The use of autonomous vehicles in real-world applications is often precluded by the difficulty of pr...
State-machine based notations are ubiquitous in the description of component systems, particularly i...
Assurance Cases (ACs) are used for justifying system confidence in important properties including sa...
We present the generic system framework of Isabelle/Isar underlying recent versions of Isabelle. Amo...
In this paper we describe how the automated instantiation of assurance case arguments will require i...
In this paper, we outline our vision for building verification tools for Cyber-Physical Systems base...
Isabelle/SACM is a tool for automated construction of model-based assurance cases with integrated fo...
This report contains supplemental material for the paper Evolution of Formal Model-based Assurance C...
Assurance cases are often required to certify critical systems. The use of formal methods in assuran...
Assurance cases (ACs) are often required to certify critical systems. The use of integrated formal m...
Security modeling is the foundation to formal verification which is a core requirement for high ass...
RoboChart is a graphical language for model-based engineering of robotic systems, in the style of UM...
The growing complexity and diversity of models used for engineering dependable systems implies that ...
Abstract. We describe results and status of a sub project of the Verisoft [1] project. While the Ver...
In this paper, we propose the use of interactive the- orem proving for explainable machine learning....
The use of autonomous vehicles in real-world applications is often precluded by the difficulty of pr...
State-machine based notations are ubiquitous in the description of component systems, particularly i...
Assurance Cases (ACs) are used for justifying system confidence in important properties including sa...
We present the generic system framework of Isabelle/Isar underlying recent versions of Isabelle. Amo...
In this paper we describe how the automated instantiation of assurance case arguments will require i...
In this paper, we outline our vision for building verification tools for Cyber-Physical Systems base...