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Distributed event region fault-tolerance based on weighted distance for wireless sensor networks

机译:基于加权距离的无线传感器网络分布式事件区域容错

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摘要

Event region detection is the important application for wireless sensor networks (WSNs), where the existing faulty sensors would lead to drastic deterioration of network quality of service. Considering single-moment nodes fault-tolerance, a novel distributed fault-tolerant detection algorithm named distributed fault-tolerance based on weighted distance (DFWD) is proposed, which exploits the spatial correlation among sensor nodes and their redundant information. In sensor networks, neighborhood sensor nodes will be endowed with different relative weights respectively according to the distances between them and the central node. Having syncretized the weighted information of dual-neighborhood nodes appropriately, it is reasonable to decide the ultimate status of the central sensor node. Simultaneously, readings of faulty sensors would be corrected during this process. Simulation results demonstrate that the DFWD has a higher fault detection accuracy compared with other algorithms, and when the sensor fault probability is 10%, the DFWD can still correct more than 91% faulty sensor nodes, which significantly improves the performance of the whole sensor network.
机译:事件区域检测是无线传感器网络(WSN)的重要应用,其中现有的故障传感器会导致网络服务质量急剧下降。针对单矩节点的容错问题,提出了一种基于加权距离的分布式容错检测算法(DFWD),该算法利用传感器节点之间的空间相关性及其冗余信息。在传感器网络中,邻域传感器节点将根据它们与中心节点之间的距离分别具有不同的相对权重。在适当地对双邻域节点的加权信息进行了融合之后,确定中央传感器节点的最终状态是合理的。同时,将在此过程中纠正故障传感器的读数。仿真结果表明,与其他算法相比,DFWD具有更高的故障检测精度,当传感器故障概率为10%时,DFWD仍然可以纠正91%以上的故障传感器节点,从而显着提高了整个传感器网络的性能。 。

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