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Optimal Power Control in Wireless Powered Sensor Networks: A Dynamic Game-Based Approach

机译:无线供电传感器网络中的最佳功率控制:一种基于动态博弈的方法

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摘要

In wireless powered sensor networks (WPSN), it is essential to research uplink transmit power control in order to achieve throughput performance balancing and energy scheduling. Each sensor should have an optimal transmit power level for revenue maximization. In this paper, we discuss a dynamic game-based algorithm for optimal power control in WPSN. The main idea is to use the non-cooperative differential game to control the uplink transmit power of wireless sensors in WPSN, to extend their working hours and to meet QoS (Quality of Services) requirements. Subsequently, the Nash equilibrium solutions are obtained through Bellman dynamic programming. At the same time, an uplink power control algorithm is proposed in a distributed manner. Through numerical simulations, we demonstrate that our algorithm can obtain optimal power control and reach convergence for an infinite horizon.
机译:在无线传感器网络(WPSN)中,研究上行链路发射功率控制以实现吞吐量性能平衡和能量调度至关重要。每个传感器应具有最佳的发射功率水平,以实现收益最大化。在本文中,我们讨论了一种基于动态博弈的WPSN中最优功率控制算法。主要思想是使用非合作差分博弈来控制WPSN中无线传感器的上行链路发射功率,延长其工作时间并满足QoS(服务质量)要求。随后,通过Bellman动态规划获得Nash平衡解。同时,提出了一种分布式的上行功率控制算法。通过数值模拟,我们证明了我们的算法可以获得无限的最优功率控制并达到收敛。

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