Win-Stay-Lose-Shift as a self-confirming equilibrium in the iterated Prisoner's Dilemma

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초록

Evolutionary game theory assumes that players replicate a highly scored player's strategy through genetic inheritance. However, when learning occurs culturally, it is often difficult to recognize someone's strategy just by observing the behaviour. In this work, we consider players with memory-one stochastic strategies in the iterated Prisoner's Dilemma, with an assumption that they cannot directly access each other's strategy but only observe the actual moves for a certain number of rounds. Based on the observation, the observer has to infer the resident strategy in a Bayesian way and chooses his or her own strategy accordingly. By examining the best-response relations, we argue that players can escape from full defection into a cooperative equilibrium supported by Win-Stay-Lose-Shift in a self-confirming manner, provided that the cost of cooperation is low and the observational learning supplies sufficiently large uncertainty.

키워드

evolution of cooperation; reciprocity; Bayesian inference; Win-Stay-Lose-Shift; observational learning; TIT-FOR-TAT; CONVERGENCE; STRATEGIES; GAMES
제목
Win-Stay-Lose-Shift as a self-confirming equilibrium in the iterated Prisoner's Dilemma
저자
Kim, Minjae; Choi, Jung-Kyoo; Baek, Seung Ki
DOI
10.1098/rspb.2021.1021
발행일
2021-06-30
유형
Article
저널명
Proceedings of the Royal Society B: Biological Sciences
권
288
호
1953