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首页> 外文期刊>IEEE transactions on network and service management >Reliable and Efficient Data Acquisition in Wireless Sensor Networks in the Presence of Transfaulty Nodes
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Reliable and Efficient Data Acquisition in Wireless Sensor Networks in the Presence of Transfaulty Nodes

机译:存在故障节点的无线传感器网络中可靠高效的数据采集

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A collection of spatially distributed sensor nodes in a wireless sensor network (WSN) work collaboratively to sense the physical phenomena around them and then send the sensed information to the sink node through single-hop or multihop paths. In this work, we propose a scheme, named , for reliable and efficient data acquisition in a stationary WSN in the presence of transfaulty nodes. Due to the transfaulty behavior, a sensor node gets temporarily isolated from the network. Temporary node isolation leads to the formation of dynamic communication holes in the network, which form and disappear dynamically. Furthermore, they may increase or decrease in size dynamically as well. These effects result in loss of information in the radiation-affected area. To prevent information loss in WSN due to transfaulty behavior of sensor nodes, in the proposed scheme, we construct the network using sensor nodes having dual mode of communication—RF and acoustic. To get redundant coverage within a radiation affected area, all the sensor nodes in the area become activated and switch to the acoustic communication mode after detecting themselves to be affected by radiations. In-network data fusion is performed to get actual information from the redundant information received from the radiation-affected area. Simulation results exhibit that the proposed scheme, , achieves better energy efficiency and reduced average end-to-end delay than sensor nodes having only acoustic mode of communication.
机译:无线传感器网络(WSN)中空间分布的传感器节点的集合协同工作以感知它们周围的物理现象,然后通过单跳或多跳路径将感知到的信息发送到宿节点。在这项工作中,我们提出了一个名为的方案,用于在存在故障节点的情况下在固定WSN中可靠且高效地进行数据采集。由于发生故障,传感器节点暂时与网络隔离。临时节点隔离会导致网络中形成动态通讯孔,这些通讯孔会动态形成和消失。此外,它们的大小也可以动态地增加或减小。这些影响导致受辐射影响的区域中信息的丢失。为了防止由于传感器节点的过错行为而导致WSN中的信息丢失,在提出的方案中,我们使用具有RF和声学双重通信模式的传感器节点来构建网络。为了在受辐射影响的区域内获得冗余覆盖,该区域中的所有传感器节点都被激活,并在检测到自己受到辐射影响后切换到声学通信模式。执行网络内数据融合以从从受辐射影响的区域接收到的冗余信息中获取实际信息。仿真结果表明,与仅具有声学通信模式的传感器节点相比,所提出的方案具有更高的能源效率,并降低了平均端到端延迟。

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