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A Game Theoretic Framework for Power Control in Wireless Sensor Networks

机译:无线传感器网络中功率控制的博弈论框架

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In infrastructure-less sensor networks, efficient usage of energy is very critical because of the limited energy available to the sensor nodes. Among various phenomena that consume energy, radio communication is by far the most demanding one. One of the effective ways to limit unnecessary energy loss is to control the power at which the nodes transmit signals. In this paper, we apply game theory to solve the power control problem in a CDMA-based distributed sensor network. We formulate a noncooperative game under incomplete information and study the existence of Nash equilibrium. With the help of this equilibrium, we devise a distributed algorithm for optimal power control and prove that the system is power stable only if the nodes comply with certain transmit power thresholds. We show that even in a noncooperative scenario, it is in the best interest of the nodes to comply with these thresholds. The power level at which a node should transmit, to maximize its utility, is evaluated. Moreover, we compare the utilities when the nodes are allowed to transmit with discrete and continuous power levels; the performance with discrete levels is upper bounded by the continuous case. We define a distortion metric that gives a quantitative measure of the goodness of having finite power levels and also find those levels that minimize the distortion. Numerical results demonstrate that the proposed algorithm achieves the best possible payoff/utility for the sensor nodes even by consuming less power.
机译:在无基础设施的传感器网络中,有效利用能量非常关键,因为可用于传感器节点的能量有限。在消耗能量的各种现象中,无线电通信是迄今为止最苛刻的一种。限制不必要的能量损失的有效方法之一是控制节点传输信号的功率。在本文中,我们应用博弈论来解决基于CDMA的分布式传感器网络中的功率控制问题。我们在不完全信息下制定了一个非合作博弈,并研究了纳什均衡的存在。借助这种平衡,我们设计了一种分布式算法以实现最佳功率控制,并证明仅当节点符合特定的发射功率阈值时,系统才是电源稳定的。我们表明,即使在不合作的情况下,遵守这些阈值也符合节点的最大利益。评估节点应传输的功率水平,以最大程度地发挥其效用。此外,我们比较了允许节点以离散和连续的功率电平传输时的效用;离散级别的性能是连续情况的上限。我们定义了一种失真度量,该度量可以定量地衡量具有有限功率电平的优劣,并找到那些使失真最小的电平。数值结果表明,所提出的算法即使消耗更少的功率,也能实现传感器节点的最佳收益/效用。

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