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Projection-Based Stopping Rules for Computerized Adaptive Testing in Licensure Testing

机译:许可测试中计算机自适应测试的基于投影的停止规则

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摘要

The confidence interval (CI) stopping rule is commonly used in licensure settings to make classification decisions with fewer items in computerized adaptive testing (CAT). However, it tends to be less efficient in the near-cut regions of the θ scale, as the CI often fails to be narrow enough for an early termination decision prior to reaching the maximum test length. To solve this problem, this study proposed the projection-based stopping rules that base the termination decisions on the algorithmically projected range of the final θ estimate at the hypothetical completion of the CAT. A simulation study and an empirical study were conducted to show the advantages of the projection-based rules over the CI rule, in which the projection-based rules reduced the test length without jeopardizing critical psychometric qualities of the test, such as the θ and classification precision. Operationally, these rules do not require additional regularization parameters, because the projection is simply a hypothetical extension of the current test within the existing CAT environment. Because these new rules are specifically designed to address the decreased efficiency in the near-cut regions as opposed to for the entire scale, the authors recommend using them in conjunction with the CI rule in practice.
机译:置信区间(CI)停止规则通常用于许可设置中,以便在计算机自​​适应测试(CAT)中以较少的项目做出分类决策。但是,在CI尺度的近切区域中,它的效率往往较低,因为CI常常无法足够窄,无法在达到最大测试长度之前就提前终止决策。为了解决这个问题,本研究提出了基于投影的停止规则,该终止规则基于在假设的CAT完成时最终θ估计的算法投影范围上的终止决策。进行了仿真研究和实证研究,以显示基于投影的规则优于CI规则的优势,其中基于投影的规则在不损害测试的关键心理计量质量(例如θ和分类)的情况下,缩短了测试时间。精确。从操作上讲,这些规则不需要其他正则化参数,因为投影只是现有CAT环境中当前测试的假设扩展。由于这些新规则是专门为解决近切区域(而不是整个规模)效率降低而设计的,因此作者建议在实践中将它们与CI规则结合使用。

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