Comparative Efficiency of Altruism and Egoism as Voting Strategies in Stochastic Environment
- Autores: Chebotarev P.Y.1,2,3, Tsodikov Y.Y.1, Loginov A.K.1, Lezina Z.M.1, Afonkin V.A.1,3, Malyshev V.A.1,2,3
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Afiliações:
- Trapeznikov Institute of Control Sciences
- Kotelnikov Institute of Radioengineering and Electronics
- Moscow Institute of Physics and Technology
- Edição: Volume 79, Nº 11 (2018)
- Páginas: 2052-2072
- Seção: Control in Technical Systems
- URL: https://journals.rcsi.science/0005-1179/article/view/151077
- DOI: https://doi.org/10.1134/S0005117918110097
- ID: 151077
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Resumo
In this paper, we study the efficiency of egoistic and altruistic strategies within the model of social dynamics determined by voting in a stochastic environment (the ViSE model) using two criteria: maximizing the average capital increment and minimizing the number of bankrupt participants. The proposals are generated stochastically; three families of the corresponding distributions are considered: normal distributions, symmetrized Pareto distributions, and Student’s t-distributions. It is found that the “pit of losses” paradox described earlier does not occur in the case of heavy-tailed distributions. The egoistic strategy better protects agents from extinction in aggressive environments than the altruistic ones, however, the efficiency of altruism is higher in more favorable environments. A comparison of altruistic strategies with each other shows that in aggressive environments, everyone should be supported to minimize extinction, while under more favorable conditions, it is more efficient to support the weakest participants. Studying the dynamics of participants’ capitals we identify situations where the two considered criteria contradict each other. At the next stage of the study, combined voting strategies and societies involving participants with selfish and altruistic strategies will be explored.
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Sobre autores
P. Chebotarev
Trapeznikov Institute of Control Sciences; Kotelnikov Institute of Radioengineering and Electronics; Moscow Institute of Physics and Technology
Autor responsável pela correspondência
Email: pavel4e@gmail.com
Rússia, Moscow; Moscow; Moscow
Ya. Tsodikov
Trapeznikov Institute of Control Sciences
Email: pavel4e@gmail.com
Rússia, Moscow
A. Loginov
Trapeznikov Institute of Control Sciences
Email: pavel4e@gmail.com
Rússia, Moscow
Z. Lezina
Trapeznikov Institute of Control Sciences
Email: pavel4e@gmail.com
Rússia, Moscow
V. Afonkin
Trapeznikov Institute of Control Sciences; Moscow Institute of Physics and Technology
Email: pavel4e@gmail.com
Rússia, Moscow; Moscow
V. Malyshev
Trapeznikov Institute of Control Sciences; Kotelnikov Institute of Radioengineering and Electronics; Moscow Institute of Physics and Technology
Email: pavel4e@gmail.com
Rússia, Moscow; Moscow; Moscow
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