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One Anchor Distance and Angle Based Multi-Hop Adaptive Iterative Localization Algorithm for Wireless Sensor Networks

机译:无线传感器网络的一种基于锚距离和角度的多跳自适应迭代定位算法

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This paper presents distance and angle measurements based Multi-Hop Adaptive and Iterative Localization algorithm/or localization of unknown nodes in wireless sensor networks (WSNs). The present work determines uncertainty region of unknown nodes with respect to known (anchor) nodes using noisy distance and angle measurements. This node transmits its uncertainty region to other unknown nodes to help them determine their uncertainty region. Because of noisy distance and angle measurements, the error propagation increases the size of regions of nodes in subsequent hops. Using only one anchor node as reference, the proposed iterative localization algorithm reduces the error propagation of this noisy distance and angle measurements and the uncertainty region of all unknown nodes within a given communication range. The results clearly indicate the improved efficiency of the proposed algorithm in comparison with existing algorithms.
机译:本文提出了基于距离和角度测量的多跳自适应和迭代定位算法/或无线传感器网络(WSN)中未知节点的定位。本工作使用嘈杂的距离和角度测量来确定未知节点相对于已知(锚定)节点的不确定区域。该节点将其不确定性区域传输到其他未知节点,以帮助他们确定其不确定性区域。由于噪声距离和角度测量的原因,错误传播会增加后续跃点中节点区域的大小。仅使用一个锚节点作为参考,所提出的迭代定位算法减少了该噪声距离和角度测量值的误差传播以及给定通信范围内所有未知节点的不确定区域。结果清楚地表明,与现有算法相比,所提出算法的效率有所提高。

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