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Evolution of altruism in spatial prisoner’s dilemma: Intra- and inter-cellular interactions

Author

Listed:
  • Yokoi, Hiroki
  • Uehara, Takashi
  • Sakata, Tomoyuki
  • Naito, Hiromi
  • Morita, Satoru
  • Tainaka, Kei-ichi

Abstract

Iterated prisoner’s dilemma game is carried out on lattice with “colony” structure. Each cell is regarded as a colony which contains plural players with an identical strategy. Both intra- and inter-cellular interactions are assumed. In the former a player plays with all other players in the same colony, while in the latter he plays with one player each from adjacent colonies. Spatial patterns among four typical strategies exhibit various dynamics and winners. Both theory and simulation reveal that All Cooperation (AC) wins, when the members of colony or the intensity of noise increases. This result explains the evolution of altruism in animal societies, even though errors easily occur in animal communications.

Suggested Citation

  • Yokoi, Hiroki & Uehara, Takashi & Sakata, Tomoyuki & Naito, Hiromi & Morita, Satoru & Tainaka, Kei-ichi, 2014. "Evolution of altruism in spatial prisoner’s dilemma: Intra- and inter-cellular interactions," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 416(C), pages 361-370.
  • Handle: RePEc:eee:phsmap:v:416:y:2014:i:c:p:361-370
    DOI: 10.1016/j.physa.2014.09.003
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    References listed on IDEAS

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    1. Oliveira dos Santos Soares, Ricardo & Martinez, Alexandre Souto, 2006. "The geometrical patterns of cooperation evolution in the spatial prisoner's dilemma: An intra-group model," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 369(2), pages 823-829.
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    Cited by:

    1. Alam, Muntasir & Nagashima, Keisuke & Tanimoto, Jun, 2018. "Various error settings bring different noise-driven effects on network reciprocity in spatial prisoner's dilemma," Chaos, Solitons & Fractals, Elsevier, vol. 114(C), pages 338-346.

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