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A Combined Security Ontology based on the Unified Foundational Ontology.

, , and . ICSC, page 187-194. IEEE, (2022)

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Regression verification of AADL models through slicing of system dependence graphs., , , and . QoSA, page 103-112. ACM, (2014)Specifying Software Requirements for Safety-Critical Railway Systems: An Experience Report., and . REFSQ, volume 10153 of Lecture Notes in Computer Science, page 363-369. Springer, (2017)A Combined Security Ontology based on the Unified Foundational Ontology., , and . ICSC, page 187-194. IEEE, (2022)Concepts and Relationships in Safety and Security Ontologies: A Comparative Study., , and . ICSRS, page 357-364. IEEE, (2022)Hazard Analysis on a System of Systems using the Hazard Ontology., , , and . SoSE, page 1-6. IEEE, (2023)Efficient Event-Triggered Tasks in an RTOS., , , , and . ESA, page 31-37. CSREA Press, (2005)An ontological approach to identify the causes of hazards for safety-critical systems., , , and . ICSRS, page 405-413. IEEE, (2017)Achieving Industrial Strength Timing Predictions of Embedded System Behavior., , and . ESA, page 173-178. CSREA Press, (2008)AQAF: An Architecture Quality Assurance Framework for Systems Modeled in AADL., , , , and . QoSA, page 31-40. IEEE Computer Society, (2016)Efficient Development of Real-Time Systems Using Hybrid Scheduling., , and . ESA, page 53-59. CSREA Press, (2005)