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Distributed push-pull estimation for node localization in wireless sensor networks

机译:无线传感器网络中节点定位的分布式推挽估计

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摘要

A great deal of research achievements on localization in wireless sensor networks (WSNs) has been obtained in recent years. Nevertheless, its interesting challenges in terms of cost-reduction, accuracy improvement, scalability, and distributed ability design have led to the development of a new algorithm, the Push-pull Estimation (PPE). In this algorithm, the differences between measurements and current calculated distances are modeled into forces, dragging the nodes close to their actual positions. Based on very few known-location sensors or beacons, PPE can pervasively estimate the coordinates of many unknown-location sensors. Each unknown-location sensor, with given pair-wise distances, could independently estimate its own position through remarkably uncomplicated calculations. Characteristics of the algorithm are examined through analyses and simulations to demonstrate that it has advantages over those of previous works in dealing with the above challenges.
机译:近年来,在无线传感器网络(WSN)的本地化方面已经获得了大量的研究成果。尽管如此,它在降低成本,提高准确性,可伸缩性和分布式能力设计方面的有趣挑战导致了新算法推挽估计(PPE)的发展。在该算法中,将测量值与当前计算出的距离之间的差异建模为力,从而将节点拖至其实际位置附近。基于很少的已知位置传感器或信标,PPE可以普遍估计许多未知位置传感器的坐标。具有给定成对距离的每个未知位置传感器都可以通过非常简单的计算来独立地估计其自身位置。通过分析和仿真检查了该算法的特征,以证明它在应对上述挑战方面比以前的工作更具优势。

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