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Approximating Nash Equilibrium Uniqueness of Power Control in Practical WSNs

机译:实际无线传感器网络中功率控制的纳什均衡唯一性

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Transmission power has a major impact on link and communication reliability and network lifetime in Wireless Sensor Networks. We study power control in a multi-hop Wireless Sensor Network where nodes' communication interfere with each other. Our objective is to determine each node's transmission power level that will reduce the communication interference and keep energy consumption to a minimum. We propose a potential game approach to obtain the unique equilibrium of the network transmission power allocation. The unique equilibrium is located in a continuous domain. However, radio transceivers accept only discrete values for transmission power level setting. We study the viability and performance of mapping the continuous solution from the potential game to the discrete domain required by the radio. We demonstrate the success of our approach through TOSSIM simulation when nodes use the Collection Tree Protocol for routing the data. Also, we show results of our method from the Indriya testbed. We compare it with the case where the motes use Collection Tree Protocol with the maximum transmission power.
机译:在无线传感器网络中,传输功率对链路和通信可靠性以及网络寿命具有重大影响。我们研究了多跳无线传感器网络中的功率控制,其中节点的通信相互干扰。我们的目标是确定每个节点的传输功率水平,以减少通信干扰并将能耗降至最低。我们提出了一种潜在的博弈方法来获得网络传输功率分配的唯一平衡。唯一平衡位于连续域中。但是,无线电收发器仅接受离散值以进行发射功率级别设置。我们研究了将连续解决方案从潜在游戏映射到无线电所需的离散域的可行性和性能。当节点使用“收集树协议”路由数据时,我们通过TOSSIM仿真证明了该方法的成功。另外,我们从Indriya测试床上展示了我们方法的结果。我们将其与微粒使用具有最大传输功率的收集树协议的情况进行比较。

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