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I came, I saw, I certified: some perspectives on the safety assurance of cyber-physical systems

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arxiv 2401.16633 v1 pith:QSZWZT5V submitted 2024-01-30 cs.SE cs.AI

classification cs.SEcs.AI
keywords assurancesystemscasescompellingcyber-physicaldevelopjustificationloss
verification ladder T0 review T1 audit T2 compute T3 formal
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The execution failure of cyber-physical systems (e.g., autonomous driving systems, unmanned aerial systems, and robotic systems) could result in the loss of life, severe injuries, large-scale environmental damage, property destruction, and major economic loss. Hence, such systems usually require a strong justification that they will effectively support critical requirements (e.g., safety, security, and reliability) for which they were designed. Thus, it is often mandatory to develop compelling assurance cases to support that justification and allow regulatory bodies to certify such systems. In such contexts, detecting assurance deficits, relying on patterns to improve the structure of assurance cases, improving existing assurance case notations, and (semi-)automating the generation of assurance cases are key to develop compelling assurance cases and foster consumer acceptance. We therefore explore challenges related to such assurance enablers and outline some potential directions that could be explored to tackle them.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Approach Towards Semi-Automated Certification for Low Criticality ML-Enabled Airborne Applications

    cs.SE 2025-01 reject novelty 5.0 of 10

    A semi-automated certification framework for DO-178C Level D ML systems is demonstrated on a YOLOv8 vehicle detector, producing a Moderate Assurance score of 74.7.

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