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Distributed Power Control Algorithm with Multi-QoS Constraints for Wireless Sensor Networks

机译:用于无线传感器网络的多QoS约束的分布式功率控制算法

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In this paper, we present a Distributed Power Control algorithm with Multi-QoS Constraints (MQDPC) for WSNs (wireless sensor networks). Energy consumption, reliability and QoS provisioning are three key objectives in WSNs. In MQDPC algorithm, each sensor node independently builds its local maximum QoS topology according to the local information collected from its one-hop neighbors using MST (minimum spanning tree) scheme, therefore MQDPC algorithm is a fully distributed algorithm. The QoS metrics considered in this algorithm comprise node residual energy, end-to-end delay and link loss ratio. We analytically prove that MQDPC algorithm preserves the network QoS topology connectivity and show that MQDPC algorithm is scalable to large-scale wireless sensor network and multidimensional QoS metrics. The simulation results demonstrate that MQDPC algorithm dynamically builds network topology when wireless sensor network topology status varies over the time, and MQCTC algorithm can efficiently prolong the network life span and improve QoS performance while meeting certain QoS requirements.
机译:在本文中,我们为WSN(无线传感器网络)提供了一种具有多QoS约束(MQDPC)的分布式功率控制算法。能源消耗,可靠性和QoS供应是WSN中的三个关键目标。在MQDPC算法中,每个传感器节点根据使用MST(最小生成树)方案从其一跳邻居收集的本地信息独立构建其局部最大QoS拓扑,因此MQDPC算法是完全分布的算法。本算法中考虑的QoS度量包括节点剩余能量,端到端延迟和链路损耗比。我们分析证明MQDPC算法保留了网络QoS拓扑连接,并显示MQDPC算法可扩展到大规模的无线传感器网络和多维QoS度量。仿真结果表明,MQDPC算法在无线传感器网络拓扑状态随时间变化时动态构建网络拓扑,而MQCTC算法可以有效地延长网络寿命并在满足某些QoS要求时提高QoS性能。

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