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From interacting agents to density-based modeling with stochastic PDEs (1905.13525v2)

Published 31 May 2019 in math.DS

Abstract: Many real-world processes can naturally be modeled as systems of interacting agents. However, the long-term simulation of such agent-based models is often intractable when the system becomes too large. In this paper, starting from a stochastic spatio-temporal agent-based model (ABM), we present a reduced model in terms of stochastic PDEs that describes the evolution of agent number densities for large populations. We discuss the algorithmic details of both approaches; regarding the SPDE model, we apply Finite Element discretization in space which not only ensures efficient simulation but also serves as a regularization of the SPDE. Illustrative examples for the spreading of an innovation among agents are given and used for comparing ABM and SPDE models.

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Authors (5)
  1. Luzie Helfmann (6 papers)
  2. Natasa Djurdjevac Conrad (5 papers)
  3. Ana Djurdjevac (24 papers)
  4. Stefanie Winkelmann (14 papers)
  5. Christof Schütte (59 papers)

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