Evidence has shown that the lack of traceability between safety requirements and both architecture and failure propagation models is a key reason for the incompleteness and inconsistency of safety requirements, and, consequently, a root cause of safety incidents. In this regard, this paper presents checks for the automatic detection of incompleteness and inconsistency of safety requirements with respect to failure propagation models and architecture. First, the notion of safety requirements completeness and consistency was decomposed into small manageable pieces called Safety Requirement Completeness and Consistency Criteria. Breaking the complex notions of completeness and consistency into finer grains was important to allow systematic and...
Product Solution (short)International audienceSafety software engineers lack automatic interaction t...
This work addresses specification and design of reliable safety-critical systems, such as nuclear re...
In the development of safety-critical embedded systems, requirements-driven approaches are widely us...
The lack of guidance on how to specify safety requirements that are properly traceable to the archit...
Despite the early adoption of ISO 26262 by the automotive industry, managing functional safety in th...
This article describes methods and tools for automated safety analysis of UML statechart specificati...
Abstract—Exposing inconsistencies can uncover many defects in software specifications. One approach ...
This article describes methods and tools for automated safety analysis of UML statechart specificati...
Formal methods like model checking can be used to demonstrate that safety properties of embedded sys...
The validation of requirements is a fundamental step in the development process of safety-critical s...
The number of embedded systems in our daily lives that are distributed, hidden, and ubiquitous conti...
L’introduction des nouvelles technologies de l’information et de la communication dans les systèmes ...
Missing requirements are known to be among the major causes of software failure. They often result f...
Missing requirements are known to be among the major causes of software failure. They often result f...
Approved for public release; distribution unlimited. 12b. DISTRIBUTION CODE 13. ABSTRACT (Maximum 20...
Product Solution (short)International audienceSafety software engineers lack automatic interaction t...
This work addresses specification and design of reliable safety-critical systems, such as nuclear re...
In the development of safety-critical embedded systems, requirements-driven approaches are widely us...
The lack of guidance on how to specify safety requirements that are properly traceable to the archit...
Despite the early adoption of ISO 26262 by the automotive industry, managing functional safety in th...
This article describes methods and tools for automated safety analysis of UML statechart specificati...
Abstract—Exposing inconsistencies can uncover many defects in software specifications. One approach ...
This article describes methods and tools for automated safety analysis of UML statechart specificati...
Formal methods like model checking can be used to demonstrate that safety properties of embedded sys...
The validation of requirements is a fundamental step in the development process of safety-critical s...
The number of embedded systems in our daily lives that are distributed, hidden, and ubiquitous conti...
L’introduction des nouvelles technologies de l’information et de la communication dans les systèmes ...
Missing requirements are known to be among the major causes of software failure. They often result f...
Missing requirements are known to be among the major causes of software failure. They often result f...
Approved for public release; distribution unlimited. 12b. DISTRIBUTION CODE 13. ABSTRACT (Maximum 20...
Product Solution (short)International audienceSafety software engineers lack automatic interaction t...
This work addresses specification and design of reliable safety-critical systems, such as nuclear re...
In the development of safety-critical embedded systems, requirements-driven approaches are widely us...