Economic Trend Resistant2n-(n-k) Designs of Resolutions III and IV Based on Hadamard Matrices

Ahlam Guiatni, Hisham Hilow

Abstract


This article utilizes the Normalized Sylvester-Hadamard Matrices  of size 2kx2kand their associated  saturated orthogonal arrays OA(2k, 2k - 1, 2, 2) topropose analgorithmbased on factor projection (Backward/Forward) for the construction of three systematic run-after-run2n-(n-k) fractional factorial designs: (i) minimum cost  trend free 2n-(n-k)designsof resolution III (2k-1≤n≤2k– 1 – k)by backward factor deletion (ii) minimum cost trend free 2n-(n-k) designsof resolution III (k+1≤n≤ 2k-1– 2+k ) by forward factor addition (iii) minimum costtrend free  2n-(n-k) designsof resolution IV (2k-2≤n≤2k-1-2) ,where each 2n-(n-k)design is economic minimizing the number of factor level changes between the 2ksuccessive runs and allows for the estimation of all factor main effects unbiased by the linear time trend,which might be present in the 2ksequentially generated responses. The article gives for each 2n-(n-k)design: (i) the defining contrast displaying the design’s alias structure(ii) the k independent generators for sequencingthe design’s  2n-(n-k) runs  by the Generalized Fold over Scheme and (ii) the minimum total cost of factor level changes between the 2n-(n-k) runs of the design. Proposed designs compete well with existing systematic2n-(n-k)designs (of either resolution) in minimizing the experimental costandin securing factors’ resistance to the non-negligible time trend.

Keywords: Sequential fractional factorial experimentation; Time trend free systematic run orders; Generalizedfoldover scheme for sequencing experimentalruns; The total cost of factor level changes between successive runs; The Normalized Sylvester –Hadamard Matrices; Orthogonal Arrays and factor projection; Design resolution and the alias structure.

DOI: 10.7176/JEP/11-25-05

Publication date:September 30th 2020


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