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An energy aware distributed clustering routing protocol for energy harvesting wireless sensor networks

机译:用于能量收集无线传感器网络的能量感知分布式群集路由协议

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Energy harvesting wireless sensor networks (EH-WSNs) have been widely used in various areas in recent years. Unlike battery-powered wireless sensor networks, EH-WSNs are powered by energy harvested from ambience. This change calls for new designs on routing protocols in EH-WSNs. This paper proposes a novel energy-aware distributed clustering routing protocol for EH-WSNs, it takes the node current residual energy and the harvested energy in a short term prediction horizon into cluster heads election process of the distributed clustering routing. A neural network based solar energy prediction model is exploited to make the protocol energy-aware. Nodes with higher residual energy and stronger energy harvesting capabilities thus have higher probability of being cluster heads. The proposed routing algorithm is compared with LEACH (low-energy adaptive clustering hierarchy) in terms of the number of awake nodes and network throughput. Simulation results show that the proposed clustering routing has stronger ability to balance energy consumption among sensor nodes and increases the network throughput by about 30% over LEACH.
机译:近年来,能量收集无线传感器网络(EH-WSN)已广泛用于各个领域。与电池供电的无线传感器网络不同,EH-WSN由从环境中收集的能量供电。此更改要求在EH-WSN中采用新的路由协议设计。提出了一种新型的EH-WSN能量感知分布式集群路由协议,该协议将节点当前的剩余能量和短期预测范围内的能量收集到分布式集群路由的簇头选举过程中。利用基于神经网络的太阳能预测模型来使协议具有能源意识。因此,具有较高剩余能量和较强能量收集能力的节点具有较高的成为簇头的可能性。就唤醒节点的数量和网络吞吐量而言,将所提出的路由算法与LEACH(低能耗自适应聚类层次结构)进行了比较。仿真结果表明,与LEACH相比,所提出的集群路由具有更强的平衡传感器节点间能量消耗的能力,并使网络吞吐量提高了约30%。

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