paper-with-me

Papers

How Lévy flights triggered by presence of defectors affect evolution of cooperation in spatial games

2021-05-19 · Genki Ichinose, Daiki Miyagawa, Erika Chiba, Hiroki Sayama

Cooperation among individuals has been key to sustaining societies. However, natural selection favors defection over cooperation. Cooperation can be favored when the mobility of individuals allows cooperators to form a cluster (or group). Mobility patterns of animals sometimes follow a L\'evy flight. A L\'evy flight is a kind of random walk but it is composed of many small movements with a few big movements. The role of L\'evy flights for cooperation has been studied by Antonioni and Tomassini. They showed that L\'evy flights promoted cooperation combined with conditional movements triggered by neighboring defectors. However, the optimal condition for neighboring defectors and how the condition changes by the intensity of L\'evy flights are still unclear. Here, we developed an agent-based model in a square lattice where agents perform L\'evy flights depending on the fraction of neighboring defectors. We systematically studied the relationships among three factors for cooperation: sensitivity to defectors, the intensity of L\'evy flights, and population density. Results of evolutionary simulations showed that moderate sensitivity most promoted cooperation. Then, we found that the shortest movements were best for cooperation when the sensitivity to defectors was high. In contrast, when the sensitivity was low, longer movements were best for cooperation. Thus, L\'evy flights, the balance between short and long jumps, promoted cooperation in any sensitivity, which was confirmed by evolutionary simulations. Finally, as the population density became larger, higher sensitivity was more beneficial for cooperation to evolve. Our study highlights that L\'evy flights are an optimal searching strategy not only for foraging but also for constructing cooperative relationships with others.

📄 PDF Abstract BibTeX arXiv:2105.09086

Code (0)

등록된 구현이 없습니다.

Tasks

Sensitivity

Similar Papers 제목 키워드 기반

Discriminatory or Samaritan -- which AI is needed for humanity? An Evolutionary Game Theory Analysis of Hybrid Human-AI populations

2023-06-30 · Tim Booker, Manuel Miranda, Jesús A. Moreno López, José María Ramos Fernández 외

As artificial intelligence (AI) systems are increasingly embedded in our lives, their presence leads to interactions that shape our behaviour, decision-making, and social interactions. Existing theoretical research has p…

Decision Making

Eco-evolutionary dynamics of cooperation in the presence of policing

2021-07-15 · Sayantan Nag Chowdhury, Srilena Kundu, Jeet Banerjee, Matjaž Perc 외

Ecology and evolution are inherently linked, and studying a mathematical model that considers both holds promise of insightful discoveries related to the dynamics of cooperation. In the present article, we use the prison…

Symbiotic behaviour in the Public Goods game with altruistic punishment

2020-12-17 · Lucas S. Flores, Heitor C. M. Fernandes, Marco A. Amaral, Mendeli H. Vainstein

Finding ways to overcome the temptation to exploit one another is still a challenge in behavioural sciences. In the framework of evolutionary game theory, punishing strategies are frequently used to promote cooperation i…

Specificity

The evolution of cooperation: an evolutionary advantage of individuals impedes the evolution of the population

2022-01-14 · Xiaoliang Wang, Andrew Harrison

Range expansion is a universal process in biological systems, and therefore plays a part in biological evolution. Using a quantitative individual-based method based on the stochastic process, we identify that enhancing t…

The Impact of Coevolution and Abstention on the Emergence of Cooperation

2017-04-28 · Marcos Cardinot, Colm O'Riordan, Josephine Griffith

This paper explores the Coevolutionary Optional Prisoner's Dilemma (COPD) game, which is a simple model to coevolve game strategy and link weights of agents playing the Optional Prisoner's Dilemma game. We consider a pop…