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Cooperative game theoretic approach to energy-efficient coverage in wireless sensor networks

机译:无线传感器网络中节能覆盖的合作游戏理论方法

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Energy efficiency and sensing accuracy have both been attractive research fields in sensor networks. Achieving both objectives is possible in a compromise model. In this paper we formulate one such problem and use a game theoretic approach for its solution. The interaction between sensor nodes is modeled as a cooperative bargaining game, where individual sensors cooperate for achieving the application sensing requirements while minimizing and balancing the energy consumption. We use Kalai-Smordinsky Bargaining Solution to find a distribution rule that optimizes the trade-off in the compromise problem. Based on the distribution rule, we propose a lightweight distributed algorithm in order to schedule nodes for performing the sensing task. Simulation shows a superiority in terms of scalability over a similar earlier work, while a comparable achievement in network lifetime improvement is obtained at the same time.
机译:能量效率和传感精度都是传感器网络中的有吸引力的研究领域。在折衷模型中实现两个目标。在本文中,我们制定了一个这样的问题并使用游戏理论方法的解决方案。传感器节点之间的相互作用被建模为合作票价游戏,其中各个传感器协作以实现应用感测要求,同时最小化和平衡能量消耗。我们使用Kalai-Smordinsky讨价还价解决方案来查找优化折衷问题的权衡的分配规则。基于分布规则,我们提出了一种轻量级分布式算法,以便调度用于执行感测任务的节点。仿真在相似的早期工作方面显示了可扩展性方面的优越性,而网络寿命改善的相当成就是同时获得的。

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