故障节点无线传感器网络中的分布式二元一致性算法

A. Abdaoui, Tarek M. Elfouly
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引用次数: 9

摘要

在传感器网络中,共识是将传感器的局部测量值与周围节点的测量值进行增强,并导致最终对共同值达成一致的过程。这里的问题是我们如何在一个包含一些故障节点的大型网络中达成共识。本文研究了存在故障节点的无线传感器网络中的分布式二进制一致性算法(BCA)。在二元共识下,每个传感器节点观察到TRUE和FALSE两种状态中的一种,目的是确定大多数节点持有这两种状态中的哪一种。详细介绍了WSN中包含P个故障节点时分布式BCA的实现。对于具有大量节点的WSN,使用TinyOS模拟器(TOSSIM)在传感器节点上进行了实现测试。在这里,TOSSIM保证代码在部署到物理节点时能够正确执行。在性能评估中,我们考虑了模拟环境下的平均收敛时间分析,并考虑了P个恶意节点的存在。这些结果分别针对具有完全连接、路径、环形、Erdos Reny随机和星形等不同拓扑结构的WSN给出。
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Distributed binary consensus algorithm in wireless sensor networks with faulty nodes
In sensor networks, consensus is a procedure to enhance the local measurements of the sensors with those of the surrounding nodes, and leads to a final agreement about a common value. The question here is how we can achieve the the consensus in a large network containing some faulty nodes. In this paper, we present distributed binary consensus algorithm (BCA) over the wireless sensor networks (WSN) in presence of faulty nodes. With binary consensus, each sensor node, observes one of two states TRUE and FALSE and the aim is to decide which one of the two states was held by the majority of the nodes. We details the implementation of the distributed BCA in WSN when the network contains P faulty nodes. The implementation was tested on sensor nodes using the TinyOS Simulator (TOSSIM) for a WSN with a large number of nodes. Here, TOSSIM guarantees that the code performs correctly when deployed on the physical nodes. In performance evaluation, we consider the analysis of the average convergence time over the simulated environment and considering the presence of P malicious nodes. These results are presented for a WSN with different topologies such as fully connected, path, ring, Erdos Reny random, and star-shaped.
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