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Distributed node location algorithm using non-anchor node clustering

机译:使用非锚节点聚类的分布式节点定位算法

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In this paper a node localization algorithm for estimating unknown node positions in wireless sensor networks is presented. The proposed algorithm is based on the distributed clustering of anchor-free nodes. In the absence of anchor nodes, clusters of these sensors are formed and relevant angular and distance measurements are taken. This is followed by two phases of nodes synchronization, in which gradual adjustments of orientation and coordinates are performed utilizing a technique similar to the time synchronization. As the final synchronization process converges, clusters coordinates are merged into a unified global coordinate system, thus completing the node localization task. Experiments show that, in the case of randomly distributed nodes, the proposed algorithm achieves good performance in the areas of improved network coverage, minimized positioning error rate, and reduced communication overhead. Data show an improvement of 51.3% in network coverage in comparison to other industry-leading clustering algorithms. In addition, when the network node density is greater than 0.9, positioning error rate is reduced by an average of 22.3%.
机译:本文提出了一种节点定位算法,用于估计无线传感器网络中的未知节点位置。该算法基于无锚节点的分布式聚类。在没有锚节点的情况下,形成这些传感器的簇​​,并进行相关的角度和距离测量。这之后是节点同步的两个阶段,其中使用类似于时间同步的技术对方向和坐标进行逐步调整。随着最终同步过程的收敛,群集坐标被合并到统一的全局坐标系中,从而完成了节点定位任务。实验表明,在节点随机分布的情况下,该算法在提高网络覆盖率,最小化定位错误率,降低通信开销方面取得了良好的性能。数据显示,与其他行业领先的群集算法相比,网络覆盖率提高了51.3%。另外,当网络节点密度大于0.9时,定位错误率平均降低22.3%。

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