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Analysis of unbalanced factorial designs with heteroscedastic data

机译:具有异方差数据的不平衡阶乘设计分析

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The present study investigates the operating characteristics of several Box-type and Welch-James (WJ) modifications on factorial designs lacking homogeneity, normality, and orthogonality. For comparison purposes the behaviours of Proc Mixed and Proc GLM, available from the SAS program, were also examined. When the shape of the distribution was symmetric, the Box-type, WJ, and Proc Mixed approaches consistently controlled the rates of error; however, when the distribution was moderately skewed only the Box-type approach limited the number of errors to the nominal value. In distributions with extreme skewness, the procedure was predominantly conservative but showed improved rates of Type-I error control using the Box-Cox method of power transformation. The execution of Proc GLM was considerably influenced by the presence of heterogeneity and scarcely affected by the absence of normality. With regard to test sensitivity, the WJ and Proc Mixed approaches were substantially more powerful than the Box-type approach when variances and cells sizes were negatively paired. However, they were equally powerful when this relationship was positive. When the population variances were homogeneous, the differences in power slightly favoured the Proc GLM approach.
机译:本研究调查了缺乏均质性,正态性和正交性的因子设计的几种Box型和Welch-James(WJ)修改的操作特性。为了进行比较,还检查了可从SAS程序获得的Proc Mixed和Proc GLM的行为。当分布的形状对称时,Box型,WJ和Proc混合方法始终控制误差率。但是,当分布出现中等偏斜时,只有Box型方法会将错误数量限制在标称值内。在偏度极高的分布中,该过程主要是保守的,但是使用Box-Cox功率变换方法显示出改进的I型错误控制率。 Proc GLM的执行很大程度上受异质性的影响,而几乎不受缺乏正常性的影响。关于测试灵敏度,当方差和像元大小为负配对时,WJ和Proc混合方法比Box型方法强大得多。但是,当这种关系是积极的时,他们同样强大。当总体方差是均质的时,力量的差异会稍微有利于Proc GLM方法。

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