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Computing equilibria in dynamic models with occasionally binding constraints

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  • Brumm, Johannes
  • Grill, Michael

Abstract

We propose a method to compute equilibria in dynamic models with several continuous state variables and occasionally binding constraints. These constraints induce non-differentiabilities in policy functions. We develop an interpolation technique that addresses this problem directly: It locates the non-differentiabilities and adds interpolation nodes there. To handle this flexible grid, it uses Delaunay interpolation, a simplicial interpolation technique. Hence, we call this method Adaptive Simplicial Interpolation (ASI). We embed ASI into a time iteration algorithm to compute recursive equilibria in an infinite horizon endowment economy where heterogeneous agents trade in a bond and a stock subject to various trading constraints. We show that this method computes equilibria accurately and outperforms other grid schemes by far.

Suggested Citation

  • Brumm, Johannes & Grill, Michael, 2014. "Computing equilibria in dynamic models with occasionally binding constraints," Journal of Economic Dynamics and Control, Elsevier, vol. 38(C), pages 142-160.
  • Handle: RePEc:eee:dyncon:v:38:y:2014:i:c:p:142-160
    DOI: 10.1016/j.jedc.2013.09.007
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    Cited by:

    1. Werner, Maximilian, 2023. "Occasionally binding liquidity constraints and macroeconomic dynamics," Journal of Economic Dynamics and Control, Elsevier, vol. 150(C).
    2. Enrique Mendoza & Sergio Villalvazo, 2020. "FiPIt: A Simple, Fast Global Method for Solving Models with Two Endogenous States & Occasionally Binding Constraints," Review of Economic Dynamics, Elsevier for the Society for Economic Dynamics, vol. 37, pages 81-102, July.
    3. Johannes Brumm & Michael Grill & Felix Kubler & Karl Schmedders, 2015. "Collateral Requirements And Asset Prices," International Economic Review, Department of Economics, University of Pennsylvania and Osaka University Institute of Social and Economic Research Association, vol. 56(1), pages 1-25, February.
    4. Brumm, Johannes & Grill, Michael & Kubler, Felix & Schmedders, Karl, 2015. "Margin regulation and volatility," Journal of Monetary Economics, Elsevier, vol. 75(C), pages 54-68.
    5. Lang, Jan Hannes & Menno, Dominik, 2023. "The state-dependent impact of changes in bank capital requirements," Discussion Papers 19/2023, Deutsche Bundesbank.
    6. Adam, Klaus & Beutel, Johannes & Marcet, Albert & Merkel, Sebastian, 2015. "Can a financial transaction tax prevent stock price booms?," Journal of Monetary Economics, Elsevier, vol. 76(S), pages 90-109.
    7. Richard W. Evans & Kerk L. Phillips, 2018. "Advantages of an Ellipse when Modeling Leisure Utility," Computational Economics, Springer;Society for Computational Economics, vol. 51(3), pages 513-533, March.
    8. Alexander Ludwig & Matthias Schön, 2018. "Endogenous Grids in Higher Dimensions: Delaunay Interpolation and Hybrid Methods," Computational Economics, Springer;Society for Computational Economics, vol. 51(3), pages 463-492, March.
    9. Peter Schober & Julian Valentin & Dirk Pflüger, 2022. "Solving High-Dimensional Dynamic Portfolio Choice Models with Hierarchical B-Splines on Sparse Grids," Computational Economics, Springer;Society for Computational Economics, vol. 59(1), pages 185-224, January.
    10. Druedahl, Jeppe & Jørgensen, Thomas Høgholm, 2017. "A general endogenous grid method for multi-dimensional models with non-convexities and constraints," Journal of Economic Dynamics and Control, Elsevier, vol. 74(C), pages 87-107.
    11. Menno, Dominik & Oliviero, Tommaso, 2020. "Financial intermediation, house prices, and the welfare effects of the U.S. Great Recession," European Economic Review, Elsevier, vol. 129(C).

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    More about this item

    Keywords

    Adaptive grid; Delaunay interpolation; Non-differentiabilities; Occasionally binding constraints; Simplicial interpolation;
    All these keywords.

    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
    • E21 - Macroeconomics and Monetary Economics - - Consumption, Saving, Production, Employment, and Investment - - - Consumption; Saving; Wealth
    • G11 - Financial Economics - - General Financial Markets - - - Portfolio Choice; Investment Decisions

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