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An Evolutionary Multi-player Game Model for Two-Hop Routing in Delay Tolerant Networks

机译:时延容忍网络中两跳路由的进化多人游戏模型

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Delay-tolerant networks (DTN) are sparse mobile ad hoc networks where contemporaneous end-to-end path is typically not available. Therefore, nodes act as relays for each other to enable data delivery. The cooperation among mobile nodes however can be hindered by selfish users. Incentive schemes are inevitably introduced to regulate the behavior of DTN users. The motivation of this paper is to seek conditions under which cooperators can survive, and even prevail in DTN without incentives. We study the formation of cooperation in DTN routing following an Evolutionary Game Theory (EGT) approach. In particular, the two-hop routing protocol is assumed to be adopted which applies to a large class of DTN routing schemes. We first formulate the two-hop DTN routing as a multi-player game. Using the concept of Evolutionarily Stable Strategy (ESS), we show that defection always dominates cooperation when the population is infinite and well-mixed. Recent developments in evolutionary biology reveal that in finite and structured populations such as graphs, cooperation is nevertheless promoted. We derive a sufficient condition for cooperators to be favored over defectors on K-regular graph. Simulation results validate our theoretical finding, and prove that cooperation indeed can prevail in DTN routing games without incentives.
机译:时延容忍网络(DTN)是稀疏的移动自组织网络,在该网络中,通常无法使用同期的端到端路径。因此,节点彼此之间充当中继器以实现数据传递。但是,自私的用户可能会阻止移动节点之间的协作。不可避免地引入了激励机制来规范DTN用户的行为。本文的动机是寻找合作者可以生存的条件,甚至可以在没有激励的情况下在DTN中盛行。我们按照进化博弈论(EGT)方法研究DTN路由中合作的形成。尤其是,假定采用了两跳路由协议,该协议适用于一大类DTN路由方案。我们首先将两跳DTN路由公式化为多人游戏。使用进化稳定策略(ESS)的概念,我们表明,当人口数量众多且混合得当时,叛逃总是在合作中占主导地位。进化生物学的最新发展表明,在有限的和结构化的种群(例如图)中,仍促进了合作。我们推导了一个充分的条件,可以使合作者在K-正则图上胜过叛逃者。仿真结果验证了我们的理论发现,并证明在DTN路由游戏中,合作确实会占上风而没有任何激励。

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