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Generalized minimum aberration mixed-level orthogonal arrays: A general approach based on sequential integer quadratically constrained quadratic programming

机译:广义最小像差混合级正交阵列:一种基于顺序整数的一般方法,二次规划二次编程

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摘要

Orthogonal fractional factorial designs and in particular orthogonal arrays (OAs) are frequently used in many fields of application, including medicine, engineering, and agriculture. In this article, we present a methodology and an algorithm to find an OA, of given size and strength, which satisfies the generalized minimum aberration criterion. The methodology is based on the joint use of polynomial counting functions, complex coding of levels, and algorithms for quadratic optimization and puts no restriction on the number of levels of each factor.
机译:正交的分数阶乘设计和特定的正交阵列(OAS)经常用于许多应用领域,包括医学,工程和农业。在本文中,我们提出了一种方法和算法,用于找到给定尺寸和强度的OA,其满足广义最小像差标准。该方法基于多项式计数功能,水平复杂编码的联合使用,以及二次优化的算法,并对每个因素的水平的数量没有限制。

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