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Game-theoretic approach to power and admission control in hierarchical wireless sensor networks

机译:分层无线传感器网络中功率和许可控制的博弈论方法

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Power efficiency and link reliability are of great importance in hierarchical wireless sensor networks (HWSNs), especially at the key level, which consists of sensor nodes located only one hop away from the sink node called OHS. The power and admission control problem in HWSNs is comsidered to improve its power efficiency and link reliability. This problem is modeled as a non-cooperative game in which the active OHSs are considered as players. By applying a double-pricing scheme in the definition of OHSs' utility function, a Nash Equilibrium solution with network properties is derived. Besides, a distributed algorithm is also proposed to show the dynamic processes to achieve Nash Equilibrium. Finally, the simulation results demonstrate the effectiveness of the proposed algorithm.
机译:在分层无线传感器网络(HWSN)中,尤其是在关键级别上,功率效率和链路可靠性非常重要,该网络由距离接收节点仅一跳(称为OHS)的传感器节点组成。考虑了HWSN中的功率和准入控制问题,以提高其功率效率和链路可靠性。这个问题被建模为非合作游戏,其中活跃的OHS被视为参与者。通过在OHS的效用函数的定义中采用双重定价方案,得出具有网络属性的Nash均衡解决方案。此外,还提出了一种分布式算法来展示实现纳什均衡的动态过程。最后,仿真结果证明了该算法的有效性。

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