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System Safety Engineering for Social and Ethical ML Risks: A Case Study

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arxiv 2211.04602 v1 pith:GSVJX74I submitted 2022-11-08 cs.LG cs.CY

classification cs.LGcs.CY
keywords systemsrisksanalysisethicalsafetysocialcomplexengineering
verification ladder T0 review T1 audit T2 compute T3 formal
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Governments, industry, and academia have undertaken efforts to identify and mitigate harms in ML-driven systems, with a particular focus on social and ethical risks of ML components in complex sociotechnical systems. However, existing approaches are largely disjointed, ad-hoc and of unknown effectiveness. Systems safety engineering is a well established discipline with a track record of identifying and managing risks in many complex sociotechnical domains. We adopt the natural hypothesis that tools from this domain could serve to enhance risk analyses of ML in its context of use. To test this hypothesis, we apply a "best of breed" systems safety analysis, Systems Theoretic Process Analysis (STPA), to a specific high-consequence system with an important ML-driven component, namely the Prescription Drug Monitoring Programs (PDMPs) operated by many US States, several of which rely on an ML-derived risk score. We focus in particular on how this analysis can extend to identifying social and ethical risks and developing concrete design-level controls to mitigate 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. From Hazard Identification to Controller Design: Proactive and LLM-Supported Safety Engineering for ML-Powered Systems

    cs.SE 2025-02 conditional novelty 4.0 of 10

    An LLM-assisted STPA walkthrough of a trail-recommendation app shows how everyday ML systems can proactively surface and mitigate a broad range of harms.

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