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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
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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
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van der Linden, Wim J. – Journal of Educational Measurement, 2011
A critical component of test speededness is the distribution of the test taker's total time on the test. A simple set of constraints on the item parameters in the lognormal model for response times is derived that can be used to control the distribution when assembling a new test form. As the constraints are linear in the item parameters, they can…
Descriptors: Test Format, Reaction Time, Test Construction
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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
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van der Linden, Wim J. – Applied Psychological Measurement, 2000
Presents six computational methods based on mixed-integer programming for assembling tests from a bank with an item-set structure and evaluated these methods using mathematical programming feasibiity and expected solution times. Illustrates these methods with two data sets from the Law School Admission Test. Discusses the best approximations to…
Descriptors: Item Banks, Test Construction, Test Items
van der Linden, Wim J.; Veldkamp, Bernard P.; Reese, Lynda M. – 2000
Presented is an integer-programming approach to item pool design that can be used to calculate an optimal blueprint for an item pool to support an existing testing program. The results are optimal in the sense that they minimize the efforts involved in actually producing the items as revealed by current item writing patterns. Also presented is an…
Descriptors: Item Banks, Test Construction, Test Items, Testing Programs
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Ariel, Adelaide; van der Linden, Wim J.; Veldkamp, Bernard P. – Journal of Educational Measurement, 2006
Item-pool management requires a balancing act between the input of new items into the pool and the output of tests assembled from it. A strategy for optimizing item-pool management is presented that is based on the idea of a periodic update of an optimal blueprint for the item pool to tune item production to test assembly. A simulation study with…
Descriptors: Item Banks, Simulation, Interaction, Test Construction
van der Linden, Wim J. – 1998
Six methods for assembling tests from a pool with an item-set structure are presented. All methods are computational and based on the technique of mixed integer programming. The methods are evaluated using such criteria as the feasibility of their linear programming problems and their expected solution times. The methods are illustrated for two…
Descriptors: Higher Education, Item Banks, Selection, Test Construction
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van der Linden, Wim J.; Adema, Jos J. – Journal of Educational Measurement, 1998
Proposes an algorithm for the assembly of multiple test forms in which the multiple-form problem is reduced to a series of computationally less intensive two-form problems. Illustrates how the method can be implemented using 0-1 linear programming and gives two examples. (SLD)
Descriptors: Algorithms, Linear Programming, Test Construction, Test Format
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van der Linden, Wim J.; Veldkamp, Bernard P.; Reese, Lynda M. – Applied Psychological Measurement, 2000
Presents an integer programming approach to item bank design that can be used to calculate an optimal blueprint for an item bank in order to support an existing testing program. Demonstrates the approach empirically using an item bank designed for the Law School Admission Test. (SLD)
Descriptors: Item Banks, Item Response Theory, Test Construction, Testing Programs
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Veldkamp, Bernard P.; van der Linden, Wim J. – Psychometrika, 2002
Examined the case of adaptive testing under a multidimensional response model with large numbers of constraints on the content of the test and items selected using a shadow test approach. Illustrated the procedure with five different cases of multidimensionality that differ in the numbers of ability dimensions and test structure with respect of…
Descriptors: Ability, Adaptive Testing, Computer Assisted Testing, Test Construction
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Adema, Jos J.; van der Linden, Wim J. – Journal of Educational Statistics, 1989
Two zero-one linear programing models for constructing tests using classical item and test parameters are given. These models are useful, for instance, when classical test theory must serve as an interface between an item response theory-based item banking system and a test constructor unfamiliar with the underlying theory. (TJH)
Descriptors: Algorithms, Computer Assisted Testing, Item Banks, Linear Programing
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van der Linden, Wim J.; Boekkooi-Timminga, Ellen – Psychometrika, 1989
A maximin model for test design based on item response theory is proposed. Only the relative shape of target test information function is specified. It serves as a constraint subject to which a linear programing algorithm maximizes the test information. The model is illustrated, and alternative models are discussed. (TJH)
Descriptors: Algorithms, Latent Trait Theory, Linear Programing, Mathematical Models
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van der Linden, Wim J. – Applied Psychological Measurement, 1998
Reviews optimal test-assembly literature and introduces the contributions to this special issue. Discusses four approaches to computerized test assembly: (1) heuristic-based test assembly; (2) 0-1 linear programming; (3) network-flow programming; and (4) an optimal design approach. Contains a bibliography of 90 sources on test assembly.…
Descriptors: Adaptive Testing, Computer Assisted Testing, Heuristics, Linear Programming
van der Linden, Wim J. – 1995
It is proposed that the assembly of tests for the measurement of multiple abilities be based on targets for the (asymptotic) variance functions of the estimators in each of the abilities. A linear programming model is presented that can be used to computerize the assembly process. Several cases of test assembly dealing with multidimensional…
Descriptors: Ability, Estimation (Mathematics), Foreign Countries, Item Banks
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