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Multidimensional Extension of Multiple Indicators Multiple Causes Models to Detect DIF

机译:多维指示器的多维延伸多次导致模型检测差异

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摘要

A number of studies have found multiple indicators multiple causes (MIMIC) models to be an effective tool in detecting uniform differential item functioning (DIF) for individual items and item bundles. A recently developed MIMIC-interaction model is capable of detecting both uniform and nonuniform DIF in the unidimensional item response theory (IRT) framework. The goal of the current study is to extend the MIMIC-interaction model for detecting DIF in the context of multidimensional IRT modelling and examine the performance of the multidimensional MIMIC-interaction model under various simulation conditions with respect to Type I error and power rates. Simulation conditions include DIF pattern and magnitude, test length, correlation between latent traits, sample size, and latent mean differences between focal and reference groups. The results of this study indicate that power rates of the multidimensional MIMIC-interaction model under uniform DIF conditions were higher than those of nonuniform DIF conditions. When anchor item length and sample size increased, power for detecting DIF increased. Also, the equal latent mean condition tended to produce higher power rates than the different mean condition. Although the multidimensional MIMIC-interaction model was found to be a reasonably useful tool for identifying uniform DIF, the performance of the model in detecting nonuniform DIF appeared to be questionable.
机译:许多研究发现多个指标多个原因(模拟)模型是检测单个项目和项目捆绑的均匀差分项目功能(DIF)的有效工具。最近开发的模拟相互作用模型能够检测单维物品响应理论(IRT)框架中的均匀和不均匀的差异。目前研究的目标是扩展用于在多维IRT建模的上下文中检测DIF的模拟交互模型,并在关于I误差和电力速率的各种仿真条件下检查多维模拟交互模型的性能。仿真条件包括差异和幅度,测试长度,潜伏性状,样本大小之间的相关性,局灶性和参考组之间的潜在平均差异。该研究的结果表明,在均匀的差条件下的多维模拟相互作用模型的功率率高于不均匀的差异。当锚固物品长度和样本尺寸增加时,检测DIF的功率增加。此外,平均延迟平均条件倾向于产生比不同平均条件更高的幂率。虽然发现多维模拟交互模型是用于识别均匀DIF的合理有用的工具,但是模型在检测非均匀DIF中的性能似乎是可疑的。

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