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Nash equilibria of packet forwarding strategies in wireless ad hoc networks

机译:无线ad hoc网络中数据包转发策略的纳什均衡

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In self-organizing ad hoc networks, all the networking functions rely on the contribution of the participants. As a basic example, nodes have to forward packets for each other in order to enable multihop communication. In recent years, incentive mechanisms have been proposed to give nodes incentive to cooperate, especially in packet forwarding. However, the need for these mechanisms was not formally justified. In this paper, we address the problem of whether cooperation can exist without incentive mechanisms. We propose a model,based on game theory and graph theory to investigate equilibrium conditions of packet forwarding strategies. We prove theorems about the equilibrium conditions for both cooperative and noncooperative strategies. We perform simulations to estimate the probability that the conditions for a cooperative equilibrium hold in randomly generated network scenarios.. As the problem is involved, we deliberately restrict ourselves to a static configuration. We conclude that in static ad hoc networks where the relationships between the nodes are likely to be stab le-cooperation needs to be encouraged.
机译:在自组织的自组织网络中,所有网络功能都依赖于参与者的贡献。作为一个基本示例,节点必须相互转发数据包才能启用多跳通信。近年来,已经提出了激励机制来给予节点合作的激励,特别是在分组转发中。但是,对这些机制的需求没有正式的理由。在本文中,我们解决了在没有激励机制的情况下合作是否可以存在的问题。我们提出了一个基于博弈论和图论的模型来研究分组转发策略的均衡条件。我们证明了关于合作和非合作策略均衡条件的定理。我们执行仿真来估计在随机生成的网络场景中保持合作均衡的条件的可能性。由于涉及到此问题,我们故意将自己限制在静态配置下。我们得出的结论是,在静态自组织网络中,需要鼓励节点之间的关系处于稳定状态。

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