AbstractWith the increasing scale and complexity of modern systems, traditional safety analysis methods such as FTA, FMEA seem inconvenient to use. Automated safety analysis based on formal models has become popular. In this paper, we took the Altarica data-flow language as the research object, and specified how to extract failure logic relations from Altarica component models and system models to generate fault trees (FTs), and proved its validity through instance verification. Fault tree generation method proposed in this paper would provide a basis for the development of automated safety analysis tools based on Altarica
Safety engineering for complex systems is a very challenging task and the industry has a firm basis...
International audienceThis article presents the high level, modeling language Al-taRica 3.0 through ...
AltaRica is a language used to describe safety critical systems that has become a de-facto European ...
AbstractWith the increasing scale and complexity of modern systems, traditional safety analysis meth...
AbstractFormal models could accurately reflect design of systems and can be used to implement automa...
International audienceSafety and risk analyses rely on models. These models have several important c...
International audienceThe aim of this article is to present the AltaRica 3.0 project. " Traditional ...
Formal methods have significant benefits for developing safety critical systems, in that they allow ...
Formal methods have significant benefits for developing safety critical systems, in that they allow ...
Formal methods and safety assessment are related domains interested by the behavioural analysis of c...
The application of fault tree analysis (FTA) to system safety and reliability is presented within th...
Reliability and safety of complex software-intensive systems are proved to be a crucial matter since...
1Safety-critical systems, such as avionics systems and medical devices, are developed with stringent...
The Model-Based approach for safety and reliability analysis is gradually wining the trust of engine...
International audienceAltaRica 3.0 is the third version of the AltaRica modeling language. AltaRica ...
Safety engineering for complex systems is a very challenging task and the industry has a firm basis...
International audienceThis article presents the high level, modeling language Al-taRica 3.0 through ...
AltaRica is a language used to describe safety critical systems that has become a de-facto European ...
AbstractWith the increasing scale and complexity of modern systems, traditional safety analysis meth...
AbstractFormal models could accurately reflect design of systems and can be used to implement automa...
International audienceSafety and risk analyses rely on models. These models have several important c...
International audienceThe aim of this article is to present the AltaRica 3.0 project. " Traditional ...
Formal methods have significant benefits for developing safety critical systems, in that they allow ...
Formal methods have significant benefits for developing safety critical systems, in that they allow ...
Formal methods and safety assessment are related domains interested by the behavioural analysis of c...
The application of fault tree analysis (FTA) to system safety and reliability is presented within th...
Reliability and safety of complex software-intensive systems are proved to be a crucial matter since...
1Safety-critical systems, such as avionics systems and medical devices, are developed with stringent...
The Model-Based approach for safety and reliability analysis is gradually wining the trust of engine...
International audienceAltaRica 3.0 is the third version of the AltaRica modeling language. AltaRica ...
Safety engineering for complex systems is a very challenging task and the industry has a firm basis...
International audienceThis article presents the high level, modeling language Al-taRica 3.0 through ...
AltaRica is a language used to describe safety critical systems that has become a de-facto European ...