基于博弈论方法的方形网格无线传感器网络效用增强

R. Valli, P. Dananjayan
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引用次数: 6

摘要

无线传感器网络中的电源控制对于保持可靠的通信链路和最大限度地延长电池寿命至关重要。高功率传输不仅会降低节点和网络的寿命,而且会引入过多的干扰。因此,每个节点必须以最小的发射功率进行传输,从而减少干扰并保持网络的连通性。本文分析了考虑随机方形拓扑同质无线传感器网络节点剩余能量的博弈论模型。分析了节点能耗最小的效用函数,研究了纳什均衡的存在性。仿真结果表明,采用方形拓扑结构可以降低功耗并保持吞吐量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Utility Enhancement by Game Theoretic Approach Using Square Grid Topology in WSN
Power control in wireless sensor networks is vital to maintain reliable communication links and to maximize the battery life. Transmitting at high power not only reduces the lifetime of the nodes and that of the network, but it also introduces excessive interference. Hence it is essential for each node to transmit at minimal transmit power, thereby reducing interference and maintaining network connectivity. This paper analyses a game theoretic model taking into consideration the residual energy of the nodes in a homogenous wireless sensor network considering random and square topology. The utility function of nodes that minimizes power consumption is analysed and the existence of Nash Equilibrium is studied. Simulation results show that, power consumption is reduced and throughput is maintained when square topology is considered.
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