Abstract Optimizing two-level orthogonal arrays for simultaneously estimating main effects and pre-specified two-factor interactions
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Optimizing two-level orthogonal arrays for simultaneously estimating main effects and pre-specified two-factor interactions

机译:优化两个级正交阵列,同时估计主要效果和预先指定的双因子交互

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AbstractThis paper considers the construction ofD-optimal two-level orthogonal arrays that allow for the joint estimation of all main effects and a specified set of two-factor interactions. A sharper upper bound on the determinant of the related matrix is derived. To numerically obtainD-optimal and nearlyD-optimal orthogonal arrays of large run sizes, an efficient search procedure is proposed based on a discrete optimization algorithm. Results on designs of 20, 24, 28, 36, 44 and 52 runs with three or fewer two-factor interactions are illustrated here to demonstrate the performance of the proposed approach. In addition, two cases with four two-factor interactions are also demonstrated here.]]>
机译:<![cdata [ Abstract 本文考虑构建 d -optimal双级正交阵列允许联合估计所有主要效应和指定的双因素相互作用。导出了相关矩阵的决定因素的锐利上限。为了数值获取 D - Optimal和近似 d - 大型运行大小的优化正交阵列,有效提出了基于离散优化算法的搜索过程。在此示出了20,24,28,36,44和52的设计的结果,这里示出了三个或更少的双因子相互作用来证明所提出的方法的性能。此外,这里还证明了两种具有四种双因子相互作用的案例。 ]]>

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