首页> 外文期刊>Science Journal of Applied Mathematics and Statistics >An Optimal Split-Plot Design for Performing a Mixture-Process Experiment
【24h】

An Optimal Split-Plot Design for Performing a Mixture-Process Experiment

机译:进行混合过程实验的最佳分割图设计

获取原文
           

摘要

In many mixture-process experiments, restricted randomization occurs and split-plot designs are commonly employed to handle these situations. The objective of this study was to obtain an optimal split-plot design for performing a mixture-process experiment. A split-plot design composed of a combination of a simplex centroid design of three mixture components and a 2~2 factorial design for the process factors was assumed. Two alternative arrangements of design points in a split-plot design were compared. Design-Expert version 10 software was used to construct I-and D-optimal split-plot designs. This study employed A-, D-, and E- optimality criteria to compare the efficiency of the constructed designs and fraction of design space plots were used to evaluate the prediction properties of the two designs. The arrangement, where there were more subplots than whole-plots was found to be more efficient and to give more precise parameter estimates in terms of A-, D- and E-optimality criteria. The I-optimal split-plot design was preferred since it had the capacity for better prediction properties and precision in the measurement of the coefficients. We thus recommend the employment of split-plot designs in experiments involving mixture formulations to measure the interaction effects of both the mixture components and the processing conditions. In cases where precision of the results is more desirable on the mixtures as well as where the mixture blends are more than the sets of process conditions, we recommend that the mixture experiment be set up at each of the points of a factorial design. In situations where the interest is on prediction aspects of the system, we recommend the I-optimal split-plot design to be employed since it has low prediction variance in much of the design space and also gives reasonably precise parameter estimates.
机译:在许多混合过程实验中,会发生受限的随机化,并且通常采用分割图设计来处理这些情况。这项研究的目的是获得用于执行混合过程实验的最佳分割图设计。假设采用由三个混合成分的单纯形质心设计和工艺因子的2〜2因子设计相结合的分裂图设计。比较了分图设计中设计点的两种替代布置。使用Design-Expert版本10软件构建I和D最优分割图设计。这项研究使用A,D和E最优标准来比较构造设计的效率,并使用设计空间图的一部分来评估两种设计的预测特性。人们发现,子图比整体图更多的安排更有效,并且可以根据A,D和E优化标准提供更精确的参数估计。首选I最佳分割图设计,因为它具有更好的预测特性和系数测量精度的能力。因此,我们建议在涉及混合物配方的实验中采用分割图设计,以测量混合物成分和加工条件的相互作用。如果对混合物的结果精度要求更高,以及混合物的混合比工艺条件集更多,我们建议在析因设计的每个点上进行混合物实验。在关注系统预测方面的情况下,我们建议使用I最优分割图设计,因为它在很多设计空间中具有较低的预测方差,并且可以给出合理精确的参数估计。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号