2012Review of Network EconomicsRequires access

Equilibrium Selection in Network Coordination Games: An Experimental Study

Vincenz Frey, Rense Corten, Vincent Buskens

Open publisher page 23 citations

Abstract

We experimentally study equilibrium selection in repeated coordination games played on networks. We test predictions from three competing theories. In line with payoff-dominance as a deductive selection principle, experienced subjects coordinate on the payoff-dominant (but risk-dominated) equilibrium. Groups of inexperienced subjects reach coordination through adaptive dynamics, with the likelihood of convergence to the payoff-dominant equilibrium not depending on the network structure. Subjects’ reactions to deviations from an established equilibrium challenge the proposition that decision noise favors coordination on the risk-dominant equilibrium.

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We experimentally study equilibrium selection in repeated coordination games played on networks. We test predictions from three competing theories. In line with payoff-dominance as a deductive selection principle, experienced subjects coordinate on the payoff-dominant (but risk-dominated) equilibrium. Groups of inexperienced subjects reach coordination through adaptive dynamics, with the likelihood of convergence to the payoff-dominant equilibrium not depending on the network structure. Subjects’ reactions to deviations from an established equilibrium challenge the proposition that decision noise favors coordination on the risk-dominant equilibrium.

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Available abstract

We experimentally study equilibrium selection in repeated coordination games played on networks. We test predictions from three competing theories. In line with payoff-dominance as a deductive selection principle, experienced subjects coordinate on the payoff-dominant (but risk-dominated) equilibrium. Groups of inexperienced subjects reach coordination through adaptive dynamics, with the likelihood of convergence to the payoff-dominant equilibrium not depending on the network structure. Subjects’ reactions to deviations from an established equilibrium challenge the proposition that decision noise favors coordination on the risk-dominant equilibrium.

Key concepts: Equilibrium selection, Coordination game, Stochastic game, Risk dominance, Selection (genetic algorithm), Mathematical economics, Dominance (genetics), Sequential equilibrium

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