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Orthogonal second-order space-filling designs with insights from simulation experiments to support test planning

机译:正交二阶空间填充设计,具有仿真实验的见识,可支持测试计划

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摘要

Frequency-based designs are presented for exploring large numbers of factors in simulation experiments. This approach yields completely orthogonal full second-order space-filling designs. We describe how they are generated, explore their space-filling properties, and compare their performance to other designs of similar sizes. We illustrate their use for test planning on a simulation model of a live counter-IED (improved explosive device) test event and present some ideas about ways in which simulation experiments can be used to support planning for live tests.
机译:提出了基于频率的设计,用于探索仿真实验中的大量因素。这种方法产生完全正交的完整二阶空间填充设计。我们将描述它们的生成方式,探索其空间填充特性,并将其性能与其他类似尺寸的设计进行比较。我们说明了它们在实时反IED(改进的爆炸装置)测试事件的仿真模型上用于测试计划的用途,并提出了一些有关如何使用仿真实验来支持实时测试计划的想法。

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