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Smolyak code for "Smolyak Method for Solving Dynamic Economic Models: Lagrange Interpolation, Anisotropic Grid and Adaptive Domain"

Author

Listed:
  • Kenneth L. Judd

    (Stanford University)

  • Lilia Maliar

    (University of Alicante)

  • Serguei Maliar

    (University of Alicante)

  • Rafael Valero

    (University of Alicante)

Programming Language

Matlab

Abstract

We show how to enhance the performance of a Smolyak method for solving dynamic economic models. First, we propose a more efficient implementation of the Smolyak method for interpolation, namely, we show how to avoid costly evaluations of repeated basis functions in the conventional Smolyak formula. Second, we extend the Smolyak method to include anisotropic constructions that allow us to target higher quality of approximation in some dimensions than in others. Third, we show how to effectively adapt the Smolyak hypercube to a solution domain of a given economic model. Finally, we argue that in large-scale economic applications, a solution algorithm based on Smolyak interpolation has substantially lower expense when it uses derivative-free fixed-point iteration instead of standard time iteration. In the context of one- and multi-agent optimal growth models, we find that the proposed modifications to the conventional Smolyak method lead to substantial increases in accuracy and speed.
(This abstract was borrowed from another version of this item.)

Suggested Citation

  • Kenneth L. Judd & Lilia Maliar & Serguei Maliar & Rafael Valero, 2015. "Smolyak code for "Smolyak Method for Solving Dynamic Economic Models: Lagrange Interpolation, Anisotropic Grid and Adaptive Domain"," QM&RBC Codes 201, Quantitative Macroeconomics & Real Business Cycles.
  • Handle: RePEc:dge:qmrbcd:201
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    File URL: https://dge.repec.org/codes/maliar/Smolyak_Anisotropic_JMMV_2014.zip
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    Keywords

    Matlab;

    JEL classification:

    • C63 - Mathematical and Quantitative Methods - - Mathematical Methods; Programming Models; Mathematical and Simulation Modeling - - - Computational Techniques
    • C68 - Mathematical and Quantitative Methods - - Mathematical Methods; Programming Models; Mathematical and Simulation Modeling - - - Computable General Equilibrium Models

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