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基于仿真的Box-Behnken设计×拉丁超立方体采样×
领域实验设计仿真
方法族Process / pipelineProcess / pipeline
起源年份1960 (base design); simulation-assisted application developed from the 1990s onward1979
提出者Box-Behnken (1960) for the base design; simulation integration emerged from computer experiment methodology in the 1980s-2000s
类型Simulation-integrated response surface designStratified space-filling sampling design
开创性文献Box, G. E. P., & Behnken, D. W. (1960). Some new three level designs for the study of quantitative variables. Technometrics, 2(4), 455-475. DOI ↗McKay, M.D., Beckman, R.J. & Conover, W.J. (1979). A Comparison of Three Methods for Selecting Values of Input Variables in the Analysis of Output from a Computer Code. Technometrics, 21(2), 239-245. DOI ↗
别名SA-BBD, computer-aided Box-Behnken design, simulation-based BBD, virtual Box-Behnken designLHS, Latin Hiperküp Örnekleme (LHS) ve Duyarlılık Analizi, stratified sampling design, space-filling design
相关44
摘要Simulation-assisted Box-Behnken design couples the three-level, near-spherical Box-Behnken experimental matrix with computer simulation models — such as finite-element analysis, computational fluid dynamics, or discrete-event simulation — to map how multiple controllable factors jointly affect one or more output responses, while eliminating the need for costly or hazardous physical prototype fabrication at every design point.Latin Hypercube Sampling (LHS) is a stratified space-filling design for computer experiments, introduced by McKay, Beckman, and Conover in 1979. It divides each input variable's range into equally probable strata and draws exactly one sample per stratum, ensuring that the full input space is covered with far fewer model evaluations than standard Monte Carlo simulation requires. It is routinely paired with global sensitivity analysis — particularly Sobol indices — to quantify how much each input drives output variability.
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ScholarGate方法对比: Simulation-assisted Box-Behnken design · Latin Hypercube Sampling. 于 2026-06-17 检索自 https://scholargate.app/zh/compare