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Energy Storage Overflow-Aware Data Delivery Scheme for Energy Harvesting Wireless Sensor Networks

机译:用于能量收集无线传感器网络的能量存储溢出感知数据传递方案

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摘要

In Energy-Harvesting Wireless Sensor Networks (EH-WSNs), energy storage with limited capacity is used in the nodes to store the harvested energy. Energy storage overflow (ESO) happens when the energy storage is full, which causes the nodes to be unable to store the newly harvested energy. In traditional data delivery schemes, there is the problem of “energy hungry and surplus coexistence”, meaning that some nodes in the network are hungry for energy while some other nodes continue to waste energy due to ESO. To alleviate this problem, in this paper, we present the ESO-aware multiple path (EAMP) data delivery scheme so that more data can be delivered to the sink. With the EAMP, multiple disjoint paths from the source node to the sink are constructed, and the source node splits data into multiple pieces with each going through one of the paths, which helps in mitigating ESO. Simulation results show that the proposed EAMP scheme can deliver more data than the existing ones.
机译:在能量收集无线传感器网络(EH-WSN)中,节点中使用容量有限的能量存储来存储收集的能量。当能量存储已满时,会发生能量存储溢出(ESO),这将导致节点无法存储新收集的能量。在传统的数据传递方案中,存在“能源饥渴和剩余并存”的问题,这意味着网络中的某些节点渴望能源,而另一些节点则由于ESO而继续浪费能源。为了缓解此问题,在本文中,我们提出了ESO感知的多路径(EAMP)数据传递方案,以便可以将更多数据传递到接收器。使用EAMP,可以构造从源节点到接收器的多条不相交的路径,并且源节点将数据分成多段,每段都经过一条路径,这有助于减轻ESO。仿真结果表明,所提出的EAMP方案可以提供比现有方案更多的数据。

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