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Li, Jie; van der Linden, Wim J. – Journal of Educational Measurement, 2018
The final step of the typical process of developing educational and psychological tests is to place the selected test items in a formatted form. The step involves the grouping and ordering of the items to meet a variety of formatting constraints. As this activity tends to be time-intensive, the use of mixed-integer programming (MIP) has been…
Descriptors: Programming, Automation, Test Items, Test Format
Barrett, Michelle D.; van der Linden, Wim J. – Journal of Educational Measurement, 2017
Linking functions adjust for differences between identifiability restrictions used in different instances of the estimation of item response model parameters. These adjustments are necessary when results from those instances are to be compared. As linking functions are derived from estimated item response model parameters, parameter estimation…
Descriptors: Item Response Theory, Error of Measurement, Programming, Evaluation Methods
Geerlings, Hanneke; van der Linden, Wim J.; Glas, Cees A. W. – Applied Psychological Measurement, 2013
Optimal test-design methods are applied to rule-based item generation. Three different cases of automated test design are presented: (a) test assembly from a pool of pregenerated, calibrated items; (b) test generation on the fly from a pool of calibrated item families; and (c) test generation on the fly directly from calibrated features defining…
Descriptors: Test Construction, Test Items, Item Banks, Automation
Diao, Qi; van der Linden, Wim J. – Applied Psychological Measurement, 2013
Automated test assembly uses the methodology of mixed integer programming to select an optimal set of items from an item bank. Automated test-form generation uses the same methodology to optimally order the items and format the test form. From an optimization point of view, production of fully formatted test forms directly from the item pool using…
Descriptors: Automation, Test Construction, Test Format, Item Banks
van der Linden, Wim J.; Diao, Qi – Journal of Educational Measurement, 2011
In automated test assembly (ATA), the methodology of mixed-integer programming is used to select test items from an item bank to meet the specifications for a desired test form and optimize its measurement accuracy. The same methodology can be used to automate the formatting of the set of selected items into the actual test form. Three different…
Descriptors: Test Items, Test Format, Test Construction, Item Banks