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Jakościowe Rozmieszczenie Wymagań (Robust Quality Function Deployment)×Analiza rodzajów i skutków możliwych błędów (FMEA)×
DziedzinaPlanowanie eksperymentówPlanowanie eksperymentów
RodzinaProcess / pipelineProcess / pipeline
Rok powstania2000s (robust extensions of QFD originating 1966)1949 (military); widespread industrial adoption 1970s–1980s
TwórcaExtension of Yoji Akao's QFD (1966); robust adaptation by Fung, Kwong and others (early 2000s)U.S. Military / NASA (formalized by MIL-P-1629, 1949)
TypHybrid quality-engineering planning methodProactive risk analysis technique
Źródło pierwotneFung, R. Y. K., Tang, J., & Tu, Y. (2002). Modeling of quality function deployment planning under resource allocation constraints. Computers & Industrial Engineering, 43(1–2), 313–328. link ↗Stamatis, D. H. (2003). Failure Mode and Effect Analysis: FMEA from Theory to Execution (2nd ed.). ASQ Quality Press. ISBN: 978-0873895989
Inne nazwyRobust QFD, Uncertainty-tolerant QFD, Fuzzy-robust QFD, Robust House of QualityFMEA, Failure Modes and Effects Analysis, FMECA, Failure Mode Effects and Criticality Analysis
Pokrewne46
PodsumowanieRobust Quality Function Deployment (Robust QFD) extends the classical House of Quality framework by explicitly modeling uncertainty and variability in customer requirements, perception ratings, and engineering correlation judgments. Instead of treating inputs as crisp single-point values, it applies fuzzy sets, interval analysis, or Taguchi-inspired robustness techniques to ensure that the resulting design targets remain stable and customer-satisfying even when inputs are imprecise or fluctuating.Failure Mode and Effects Analysis (FMEA) is a structured, proactive risk management technique used to identify potential failure modes in a system, process, or product design, evaluate their consequences, and prioritize corrective actions before failures occur. Originally developed for the U.S. military in 1949 and later adopted by NASA, automotive, and manufacturing industries, FMEA is now a cornerstone quality-engineering tool embedded in standards such as AIAG-VDA and ISO 9001-aligned processes.
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  3. PUBLISHED

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ScholarGatePorównaj metody: Robust Quality Function Deployment · Failure Mode and Effects Analysis. Pobrano 2026-06-15 z https://scholargate.app/pl/compare