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Applying Mathematical Optimization Methods to an ACT-R Instance-Based Learning Model

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  • Nadia Said
  • Michael Engelhart
  • Christian Kirches
  • Stefan Körkel
  • Daniel V Holt

Abstract

Computational models of cognition provide an interface to connect advanced mathematical tools and methods to empirically supported theories of behavior in psychology, cognitive science, and neuroscience. In this article, we consider a computational model of instance-based learning, implemented in the ACT-R cognitive architecture. We propose an approach for obtaining mathematical reformulations of such cognitive models that improve their computational tractability. For the well-established Sugar Factory dynamic decision making task, we conduct a simulation study to analyze central model parameters. We show how mathematical optimization techniques can be applied to efficiently identify optimal parameter values with respect to different optimization goals. Beyond these methodological contributions, our analysis reveals the sensitivity of this particular task with respect to initial settings and yields new insights into how average human performance deviates from potential optimal performance. We conclude by discussing possible extensions of our approach as well as future steps towards applying more powerful derivative-based optimization methods.

Suggested Citation

  • Nadia Said & Michael Engelhart & Christian Kirches & Stefan Körkel & Daniel V Holt, 2016. "Applying Mathematical Optimization Methods to an ACT-R Instance-Based Learning Model," PLOS ONE, Public Library of Science, vol. 11(7), pages 1-19, July.
  • Handle: RePEc:plo:pone00:0158832
    DOI: 10.1371/journal.pone.0158832
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    1. Angelina Risky Maharani & Lilik Eka Radiati & Agus Susilo & Firman Jaya & Anang Lastriyanto & Dewi Masyithoh, 2024. "Formulation optimisation for pilot-scale honey powder production: A response surface methodology and central composite design approach," Czech Journal of Food Sciences, Czech Academy of Agricultural Sciences, vol. 42(1), pages 45-54.

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