English

The self-organizing impact of averaged payoffs on the evolution of cooperation

Physics and Society 2021-07-07 v1 Statistical Mechanics Computer Science and Game Theory Populations and Evolution

Abstract

According to the fundamental principle of evolutionary game theory, the more successful strategy in a population should spread. Hence, during a strategy imitation process a player compares its payoff value to the payoff value held by a competing strategy. But this information is not always accurate. To avoid ambiguity a learner may therefore decide to collect a more reliable statistics by averaging the payoff values of its opponents in the neighborhood, and makes a decision afterwards. This simple alteration of the standard microscopic protocol significantly improves the cooperation level in a population. Furthermore, the positive impact can be strengthened by increasing the role of the environment and the size of the evaluation circle. The mechanism that explains this improvement is based on a self-organizing process which reveals the detrimental consequence of defector aggregation that remains partly hidden during face-to-face comparisons. Notably, the reported phenomenon is not limited to lattice populations but remains valid also for systems described by irregular interaction networks.

Keywords

Cite

@article{arxiv.2107.01997,
  title  = {The self-organizing impact of averaged payoffs on the evolution of cooperation},
  author = {A. Szolnoki and M. Perc},
  journal= {arXiv preprint arXiv:2107.01997},
  year   = {2021}
}

Comments

16 pages, 7 figures; accepted for publication in New Journal of Physics