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Analyse de l'arbre de défaillance basée sur le risque×Analyse de fiabilité basée sur le risque×
DomainePlans d'expériencesPlans d'expériences
FamilleProcess / pipelineProcess / pipeline
Année d'origine1961 (FTA origin); risk-based integration formalised 1975–19811960s–1990s (risk-informed frameworks codified ~1980s–1990s)
Auteur d'origineH.A. Watson (Bell Labs) and developed further by Boeing/U.S. Air Force; risk-based extension via NRC probabilistic risk assessment programsMultiple contributors; formalized in reliability engineering literature from the 1960s onward (MIL-HDBK-217, IEC 60300 series)
TypeQuantitative safety and reliability analysisQuantitative / semi-quantitative engineering analysis
Source fondatriceVesely, W. E., Goldberg, F. F., Roberts, N. H., & Haasl, D. F. (1981). Fault Tree Handbook. U.S. Nuclear Regulatory Commission, NUREG-0492. link ↗Modarres, M., Kaminskiy, M., & Krivtsov, V. (2006). Reliability Engineering and Risk Analysis: A Practical Guide (2nd ed.). CRC Press. ISBN: 978-0849392016
AliasRB-FTA, risk-informed FTA, quantitative fault tree analysis, probabilistic fault tree analysisRBRA, risk-informed reliability analysis, risk-based dependability analysis, probabilistic risk and reliability assessment
Apparentées66
RésuméRisk-based fault tree analysis (RB-FTA) combines classical fault tree analysis with explicit quantitative risk assessment. Starting from an undesired top event, the analyst decomposes it into contributing causes using AND/OR logic gates, assigns failure probabilities to basic events from reliability databases or historical data, and then propagates those probabilities through the tree to compute top-event likelihood. The result is expressed as risk — probability weighted by consequence severity — enabling prioritisation of safety interventions by their actual risk reduction impact.Risk-based reliability analysis (RBRA) is an engineering methodology that combines classical reliability analysis — quantifying failure rates, component lifetimes, and system dependability — with risk assessment frameworks that weigh the severity and consequences of each failure mode. By ranking failures according to both their likelihood and their impact, RBRA guides engineers in allocating inspection, maintenance, and redesign resources where they matter most, rather than treating all potential failures as equally important.
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ScholarGateComparer des méthodes: Risk-based fault tree analysis · Risk-based reliability analysis. Consulté le 2026-06-18 sur https://scholargate.app/fr/compare