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方法族Process / pipelineProcess / pipeline
起源年份1950s–1960s (classical FFD); adaptive extensions formalized in 1990s–2000s1951
提出者Box, Hunter, and collaborators (adaptive/sequential extension of classical fractional factorial work)George E. P. Box and K. B. Wilson
类型Experimental design strategyResponse surface experimental design
开创性文献Box, G. E. P., Hunter, J. S., & Hunter, W. G. (2005). Statistics for Experimenters: Design, Innovation, and Discovery (2nd ed.). Wiley-Interscience. ISBN: 978-0471718130Box, G. E. P., & Wilson, K. B. (1951). On the experimental attainment of optimum conditions. Journal of the Royal Statistical Society: Series B, 13(1), 1–45. DOI ↗
别名adaptive FFE, sequential fractional factorial design, adaptive screening design, adaptive factor screeningCCD, Box-Wilson design, central composite response surface design, rotatable central composite design
相关23
摘要An adaptive fractional factorial experiment combines the resource-efficiency of fractional factorial designs with a sequential, data-driven strategy for selecting which factors and interactions to investigate next. Rather than committing all experimental runs upfront, the researcher analyses results from an initial fraction and uses those findings to guide subsequent rounds of experimentation — augmenting, folding, or redirecting the design until the active factors and optimal settings are identified with sufficient precision.Central Composite Design (CCD) is a second-order response surface design that allows researchers to efficiently fit a full quadratic model relating multiple continuous input factors to one or more response variables. Introduced by Box and Wilson in 1951, it combines a factorial (or fractional factorial) core, axial (star) points, and center-point replicates into a single unified design, making it the most widely used design for process optimization in engineering, chemistry, and manufacturing.
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ScholarGate方法对比: Adaptive Fractional Factorial Experiment · Central Composite Design. 于 2026-06-19 检索自 https://scholargate.app/zh/compare