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Power and type I error of the mean and covariance structure analysis model for detecting differential item functioning in graded response items

机译:均值和协方差结构分析模型的幂和I类误差,用于检测分级响应项目中的差异项目功能

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摘要

In this simulation study, we investigate the power and Type I error rate of a procedure based on the mean and covariance structure analysis (MACS) model in detecting differential item functioning (DIF) of graded response items with five response categories. The following factors were manipulated: type of DIF (uniform and non-uniform), DIF magnitude (low, medium and large), equality/inequality of latent trait distributions, sample size (100, 200, 400, and 800) and equality or inequality of the sample sizes across groups. The simulated test was made up of 10 items, of which only I contained DIF One hundred replications were generated for each simulated condition. Results indicate that the MACS-based procedure showed acceptable power levels ( >=.70) for detecting medium-sized uniform and non-uniform DIF, when both groups' sample sizes were as low as 200/200 and 400/200, respectively. Power increased as sample sizes and DIF magnitude increased. The analyzed procedure tended to better control for its Type I error when both groups' sizes and latent trait distribution were equal across groups and when magnitude of DIF and sample size were small.
机译:在此仿真研究中,我们研究基于均值和协方差结构分析(MACS)模型的过程的功效和I类错误率,以检测具有五个响应类别的分级响应项目的差异项功能(DIF)。操纵了以下因素:DIF的类型(均匀和不均匀),DIF大小(低,中和大),潜在性状分布的相等/不相等,样本大小(100、200、400和800)以及相等或组间样本量的不平等。模拟测试由10个项目组成,其中只有I个包含DIF。对于每个模拟条件,都会生成一百次重复。结果表明,当两组样本量分别低至200/200和400/200时,基于MACS的程序显示出可接受的功率水平(> =。70),用于检测中等大小的DIF。功率随着样本大小和DIF幅度的增加而增加。当两组的大小和潜在特征分布在组之间相等且DIF的大小和样本量较小时,所分析的过程倾向于更好地控制其I型错误。

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