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《Journal of Qufu Normal University(Natural Science)》 2010-04
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Minimum E-aberration Criterion for 2-level Fractional Factorial Designs

ZHAO Sheng-li①,LIU Xia②(① School of Mathematical Sciences,Qufu Normal University,273165,Qufu;② No.49 Middle School in Qingdao,266043,Qingdao,Shandong,PRC)  
The lower order effects are more important than the higher order effects according to the effect hierarchy principle.Under such circumstances,minimum E-aberration (MEA) criterion based on the structures of the alias sets is suggested to rank 2n-m designs.Relations between this new criterion and other optimality criteria,i.e.,the maximum resolution,minimum aberration,clear effects and maximum estimation capacity criteria,are studied.MEA designs with 16 and 32 runs are tabulated.
【Fund】: supported by the NNSF of China(10826059 10901092);; the NSF of Shandong Province of China (Q2007A05);; the China Postdoctoral Science Foundation(20090451292)
【CateGory Index】: O212.6
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【Citations】
Chinese Journal Full-text Database 1 Hits
1 ZHAO Sheng-li,LIU Yan-li(School of Mathematical Sciences,Qufu Normal University,273165,Qufu,Shandong,PRC);Some Results on 3-level Factorial Designs[J];Journal of Qufu Normal University(Natural Science);2008-01
【Co-citations】
Chinese Journal Full-text Database 1 Hits
1 ZHAO Sheng-li(School of Mathematical Sciences,Qufu Normal University,273165,Qufu,Shandong,PRC);Some Results on General Minimum Lower Order Confounding Criterion for Blocked Designs[J];Journal of Qufu Normal University(Natural Science);2010-03
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