Deterministic equations for stochastic spatial evolutionary games

Spatial evolutionary games model individuals who are distributed in a spatial domain and update their strategies upon playing a normal form game with their neighbors. We derive integro-differential equations as deterministic approximations of the microscopic updating stochastic processes. This gener...

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Veröffentlicht in:Theoretical economics 2013-09, Vol.8 (3), p.829-874
Hauptverfasser: Hwang, Sung-Ha, Katsoulakis, Markos, Rey-Bellet, Luc
Format: Artikel
Sprache:eng
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Zusammenfassung:Spatial evolutionary games model individuals who are distributed in a spatial domain and update their strategies upon playing a normal form game with their neighbors. We derive integro-differential equations as deterministic approximations of the microscopic updating stochastic processes. This generalizes the known mean-field ordinary differential equations and provide a powerful tool to investigate the spatial effects in populations evolution. The deterministic equations allow to identify many interesting features of the evolution of strategy profiles in a population, such as standing and traveling waves, and pattern formation, especially in replicator-type evolutions.
ISSN:1555-7561
1933-6837
1555-7561
DOI:10.3982/TE829