A strategy of win-stay, lose-shift that outperforms tit-for-tat in the Prisoner's Dilemma game
- 1 July 1993
- journal article
- letter
- Published by Springer Nature in Nature
- Vol. 364 (6432) , 56-58
- https://doi.org/10.1038/364056a0
Abstract
THE Prisoner's Dilemma is the leading metaphor for the evolution of cooperative behaviour in populations of selfish agents, especially since the well-known computer tournaments of Axelrod1 and their application to biological communities2,3. In Axelrod's simulations, the simple strategy tit-for-tat did outstandingly well and subsequently became the major paradigm for reciprocal altruism4 12. Here we present extended evolutionary simulations of heterogeneous ensembles of probabilistic strategies including mutation and selection, and report the unexpected success of another protagonist: Pavlov. This strategy is as simple as tit-for-tat and embodies the fundamental behavioural mechanism win-stay, lose-shift, which seems to be a widespread rule13. Pavlov's success is based on two important advantages over tit-for-tat: it can correct occasional mistakes and exploit unconditional cooperators. This second feature prevents Pavlov populations from being undermined by unconditional cooperators, which in turn invite defectors. Pavlov seems to be more robust than tit-for-tat, suggesting that cooperative behaviour in natural situations may often be based on win-stay, lose-shift.Keywords
This publication has 18 references indexed in Scilit:
- Evolutionary games and spatial chaosNature, 1992
- Tit for tat in heterogeneous populationsNature, 1992
- Mistakes allow evolutionary stability in the repeated prisoner's dilemma gameJournal of Theoretical Biology, 1989
- The Further Evolution of CooperationScience, 1988
- TIT FOR TAT in sticklebacks and the evolution of cooperationNature, 1987
- Mutual Restraint in Tree Swallows: A Test of the TIT FOR TAT Model of ReciprocityScience, 1985
- Gaps in Harley's argument on evolutionarily stable learning rules and in the logic of “tit for tat”Behavioral and Brain Sciences, 1984
- Game theory and the evolution of behaviourBehavioral and Brain Sciences, 1984
- Reciprocal food sharing in the vampire batNature, 1984
- The Evolution of CooperationScience, 1981