Transition prediction in the Ising-model

Author:

Füllsack Manfred,Reisinger DanielORCID

Abstract

Dynamical systems can be subject to critical transitions where a system’s state abruptly shifts from one stable equilibrium to another. To a certain extent such transitions can be predicted with a set of methods known as early warning signals. These methods are often developed and tested on systems simulated with equation-based approaches that focus on the aggregate dynamics of a system. Many ecological phenomena however seem to necessitate the consideration of a system’s micro-level interactions since only there the actual reasons for sudden state transitions become apparent. Agent-based approaches that simulate systems from the bottom up by explicitly focusing on these micro-level interactions have only rarely been used in such investigations. This study compares the performance of a bifurcation estimation method for predicting state transitions when applied to data from an equation-based and an agent-based version of the Ising-model. The results show that the method can be applied to agent-based models and, despite its greater stochasticity, can provide useful predictions about state changes in complex systems.

Funder

University of Graz

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Reference31 articles.

1. Forecasting a class of bifurcations: Theory and experiment;J. Lim;Phys. Rev. E,2011

2. Forecasting bifurcations from large perturbation recoveries in feedback ecosystems;K. D’Souza;PloS One,2015

3. Forecasting critical points and post-critical limit cycles in nonlinear oscillatory systems using pre-critical transient responses;A. Ghadami;Int. J. Non-Linear Mech.,2018

4. Predicting regime shifts in social systems modelled with agent-based methods;M. Füllsack;J. Comput. Soc. Sci.,2020

5. Alternative equilibria in shallow lakes;M. Scheffer;Trends Ecol. Evol.,1993

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