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Energy-efficient topology control in wireless ad hoc networks with selfish nodes

机译:具有自私节点的无线自组网中的节能拓扑控制

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摘要

In wireless ad hoc networks there is no fixed infrastructure or centralized controller to enforce cooperation between nodes. Therefore, nodes may act selfishly in running network protocols for conserving their own energy resources. In this paper, we consider the "topol ogy control (TC) game" as the problem of creating an energy-efficient topology in wireless ad hoc networks in the presence of selfish nodes. We define a new TC game in which nodes are able to dynamically adjust their transmission power in a per-packet manner, and try to minimize their energy usage through considering both traffic load and transmission power parameters. After analyzing the problem, we propose several algorithms to find stable topologies in an environment composed of selfish nodes, using two types of global and local connectivity information. Finally, we evaluate the performance of the proposed algo rithms by simulations. Our simulation results show that using appropriate local informa tion can interestingly result in more efficient topologies than global information.
机译:在无线自组织网络中,没有固定的基础结构或集中式控制器来强制节点之间的协作。因此,节点可以在运行网络协议中自私地行动以节省其自身的能源。在本文中,我们认为“白杨控制(TC)游戏”是在存在自私节点的情况下在无线ad hoc网络中创建节能拓扑的问题。我们定义了一个新的TC游戏,其中节点能够以每个数据包的方式动态调整其传输功率,并尝试通过同时考虑流量负载和传输功率参数来最大程度地减少其能源消耗。在分析了问题之后,我们提出了几种算法,可以使用两种类型的全局和本地连接性信息在由自私节点组成的环境中找到稳定的拓扑。最后,我们通过仿真评估了拟议算法的性能。我们的仿真结果表明,使用适当的本地信息可以比全局信息有趣地产生更有效的拓扑。

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