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Safety and security collaborative analysis framework for high-performance embedded computing devices.

, , , and . Microprocess. Microsystems, (September 2022)

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Statistical Test Coverage for Linux-Based Next-Generation Autonomous Safety-Related Systems., , , , , and . IEEE Access, (2021)Safety and security collaborative analysis framework for high-performance embedded computing devices., , , and . Microprocess. Microsystems, (September 2022)Multi-core Devices for Safety-critical Systems: A Survey., , , , , , , and . ACM Comput. Surv., 53 (4): 79:1-79:38 (2021)Reusable generic design patterns for mixed-criticality systems based on DREAMS., , , , , , and . Microprocess. Microsystems, (2017)SAFEPOWER project: Architecture for safe and power-efficient mixed-criticality systems., , , , , , , , , and 8 other author(s). Microprocess. Microsystems, (2017)On Neural Networks Redundancy and Diversity for Their Use in Safety-Critical Systems., , , , , and . Computer, 56 (5): 41-50 (May 2023)GPU Devices for Safety-Critical Systems: A Survey., , , , , and . ACM Comput. Surv., 55 (7): 147:1-147:37 (2023)Uncertainty Management in Dependable and Intelligent Embedded Software., , and . Computer, 56 (3): 114-117 (March 2023)A Methodology for Selective Protection of Matrix Multiplications: A Diagnostic Coverage and Performance Trade-off for CNNs Executed on GPUs., , , , and . ICSRS, page 9-18. IEEE, (2022)Fear Field: Adaptive constraints for safe environment transitions in Shielded Reinforcement Learning., , , , and . AISafety/SafeRL@IJCAI, volume 3505 of CEUR Workshop Proceedings, CEUR-WS.org, (2023)