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A Distributed Energy-Balanced Topology Control Algorithm Based on a Noncooperative Game for Wireless Sensor Networks

机译:基于非合作博弈的无线传感器网络分布式能量平衡拓扑控制算法

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摘要

In wireless sensor networks, nodes may adopt selfish behavior to save their energy resources, which causes energy imbalance among nodes, because of lacking a central controller with the function of making nodes cooperate. Noncooperative game is an effective tool for portraying this kind of selfish behavior. In this paper, we address the problems of transmission power minimization and energy balance using a topology control game. Firstly, we establish a topology control game model and prove that the topology game model is an ordinal potential game with Pareto optimality. Secondly, based on this model, we propose an Energy Balance Topology control Game algorithm (EBTG), in which, by taking the energy efficiency and energy balance of the nodes into account, we design an improved optimization-integrated utility function by introducing the Theil index. Finally, simulation results show that the EBTG algorithm can improve the energy balance and energy efficiency, and can prolong the network lifetime in comparison with other topology control algorithms based on game theory.
机译:在无线传感器网络中,由于缺乏具有使节点协作功能的中央控制器,节点可能采取自私的行为来节省其能量资源,从而导致节点之间的能量失衡。非合作游戏是刻画这种自私行为的有效工具。在本文中,我们使用拓扑控制博弈解决了传输功率最小化和能量平衡的问题。首先,我们建立了一个拓扑控制博弈模型,并证明该拓扑博弈模型是具有帕累托最优性的序数潜在博弈。其次,在该模型的基础上,提出了能量平衡拓扑控制博弈算法(EBTG),其中考虑节点的能量效率和能量平衡,通过引入Theil设计改进的优化集成效用函数。指数。最后,仿真结果表明,与基于博弈论的其他拓扑控制算法相比,EBTG算法可以改善能量平衡和能源效率,并可以延长网络寿命。

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