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강건 고장 모드 및 영향 분석×고장수목 분석 (FTA)×
분야실험설계신뢰성
계열Process / pipelineProcess / pipeline
기원 연도1980s–1990s1981
창시자Extension of traditional FMEA (MIL-P-1629, 1949) integrated with Taguchi robust design philosophy (Genichi Taguchi, 1980s)Vesely et al. (US NRC Fault Tree Handbook)
유형Risk analysis with variability quantificationDeductive top-down failure analysis
원전Stamatis, D. H. (2003). Failure Mode and Effect Analysis: FMEA from Theory to Execution (2nd ed.). ASQ Quality Press. ISBN: 978-0873895989Vesely, W. E., Goldberg, F. F., Roberts, N. H., & Haasl, D. F. (1981). Fault Tree Handbook (NUREG-0492). U.S. Nuclear Regulatory Commission. link ↗
별칭Robust FMEA, Noise-Aware FMEA, Variability-Integrated FMEA, Robustness-Based FMEAFTA, Fault Tree Method, Top-Down Reliability Analysis, Hata Ağacı Analizi
관련43
요약Robust Failure Mode and Effects Analysis extends the classical FMEA framework by explicitly incorporating noise factors, parameter variability, and environmental variation into the risk assessment process. Rather than treating failure likelihood as a single deterministic estimate, it uses robust design principles — most notably from Taguchi's quality engineering — to evaluate how process variability and uncontrollable noise factors influence the probability and severity of each failure mode, yielding risk priority numbers that reflect real-world variability.Fault Tree Analysis (FTA) is a top-down, deductive reliability method that begins with an undesired top-level failure event and systematically traces backward through chains of contributing causes using Boolean logic gates (AND, OR). First formalized by Watson at Bell Telephone Laboratories in 1961 and later standardized by Vesely, Goldberg, Roberts, and Haasl in the landmark 1981 NRC Fault Tree Handbook, FTA has become a cornerstone of quantitative risk assessment in nuclear, aerospace, and industrial safety engineering.
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ScholarGate방법 비교: Robust Failure Mode and Effects Analysis · Fault Tree Analysis. 2026-06-17에 다음에서 검색함: https://scholargate.app/ko/compare