3D model for optimising the communication topologies of iterated N-players prisoners' dilemma

Sally Almanasra, K. Suwais
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引用次数: 1

Abstract

The evolution of cooperative behaviour in iterated N-players prisoners' dilemma (INPPD) is studied over several communication topologies. Existing models presented several solution models for evolving the cooperative behaviour among INPPD players. The researches revealed that none of the existing models pay attention to the pivot role of the best players in evolving the cooperative behaviour. In this paper, we present a 3D model for optimising communication topologies of INPPD to increase the cooperative rate between players. The 3D model aims to transfer well-known topologies to new 3D topologies that give the best players major roles in the game. This is important as exchanging experiences between players is essential for evolving effective cooperation. Concerning the evolutionary algorithm, this model was designed with the support of a genetic algorithm with synchronous updating to evolve the players' strategies. The results showed that the 3D model could increase the cooperative rate dramatically when compared to the original communication topologies.
优化迭代n人囚徒困境通信拓扑的三维模型
在不同的通信拓扑下,研究了迭代n人囚徒困境(INPPD)中合作行为的演化。现有模型提出了多个求解INPPD参与者合作行为演化的模型。研究表明,现有的模型都没有考虑到最佳参与者在合作行为演化过程中的支点作用。在本文中,我们提出了一个优化INPPD通信拓扑的三维模型,以提高参与者之间的合作率。3D模型旨在将已知的拓扑转移到新的3D拓扑中,从而使最优秀的玩家在游戏中发挥主要作用。这一点非常重要,因为玩家之间的经验交流对于发展有效合作至关重要。在进化算法方面,该模型采用同步更新的遗传算法进行设计,实现参与人策略的进化。结果表明,与原有的通信拓扑结构相比,该模型能显著提高协作率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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