Evolution of cooperation in spatial traveler's dilemma game
arXiv:1209.3348 · doi:10.1371/journal.pone.0058597
Abstract
Traveler's dilemma (TD) is one of social dilemmas which has been well studied in the economics community, but it is attracted little attention in the physics community. The TD game is a two-person game. Each player can select an integer value between and () as a pure strategy. If both of them select the same value, the payoff to them will be that value. If the players select different values, say and (), then the payoff to the player who chooses the small value will be and the payoff to the other player will be . We term the player who selects a large value as the cooperator, and the one who chooses a small value as the defector. The reason is that if both of them select large values, it will result in a large total payoff. The Nash equilibrium of the TD game is to choose the smallest value . However, in previous behavioral studies, players in TD game typically select values that are much larger than , and the average selected value exhibits an inverse relationship with . To explain such anomalous behavior, in this paper, we study the evolution of cooperation in spatial traveler's dilemma game where the players are located on a square lattice and each player plays TD games with his neighbors. Players in our model can adopt their neighbors' strategies following two standard models of spatial game dynamics. Monte-Carlo simulation is applied to our model, and the results show that the cooperation level of the system, which is proportional to the average value of the strategies, decreases with increasing until is greater than the threshold where cooperation vanishes. Our findings indicate that spatial reciprocity promotes the evolution of cooperation in TD game and the spatial TD game model can interpret the anomalous behavior observed in previous behavioral experiments.
References in corpus (16)
- Evolutionary games on graphs
- Evolutionary dynamics of group interactions on structured populations: A review
- Social diversity and promotion of cooperation in the spatial prisoner's dilemma game
- Phase diagrams for the spatial public goods game with pool-punishment
- Evolutionary establishment of moral and double moral standards through spatial interactions
- Defense mechanisms of empathetic players in the spatial ultimatum game
- Conditional strategies and the evolution of cooperation in spatial public goods games
- Impact of critical mass on the evolution of cooperation in spatial public goods games
- Group-size effects on the evolution of cooperation in the spatial public goods game
- Defector-accelerated cooperativeness and punishment in public goods games with mutations
- Cooperative Behavior in a Model of Evolutionary Snowdrift Games with -person Interactions
- Phase diagrams for three-strategy evolutionary prisoner's dilemma games on regular graphs
- Diversity of reproduction time scale promotes cooperation in spatial prisoner's dilemma games
- Effects of inhomogeneous activity of players and noise on cooperation in spatial public goods games
- Accuracy in strategy imitations promotes the evolution of fairness in the spatial ultimatum game
- Impact of generalized benefit functions on the evolution of cooperation in spatial public goods games with continuous strategies