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Multi-Hop Localization Algorithm Based on Grid-Scanning for Wireless Sensor Networks *

机译:基于网格扫描的无线传感器网络多跳定位算法*

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For large-scale wireless sensor networks (WSNs) with a minority of anchor nodes, multi-hop localization is a popular scheme for determining the geographical positions of the normal nodes. However, in practice existing multi-hop localization methods suffer from various kinds of problems, such as poor adaptability to irregular topology, high computational complexity, low positioning accuracy, etc. To address these issues in this paper, we propose a novel Multi-hop Localization algorithm based on Grid-Scanning (MLGS). First, the factors that influence the multi-hop distance estimation are studied and a more realistic multi-hop localization model is constructed. Then, the feasible regions of the normal nodes are determined according to the intersection of bounding square rings. Finally, a verifiably good approximation scheme based on grid-scanning is developed to estimate the coordinates of the normal nodes. Additionally, the positioning accuracy of the normal nodes can be improved through neighbors’ collaboration. Extensive simulations are performed in isotropic and anisotropic networks. The comparisons with some typical algorithms of node localization confirm the effectiveness and efficiency of our algorithm.
机译:对于具有少数锚节点的大规模无线传感器网络(WSN),多跳定位是一种用于确定正常节点地理位置的流行方案。但是,在实践中,现有的多跳定位方法存在各种问题,如对不规则拓扑的适应性差,计算复杂度高,定位精度低等。针对这些问题,我们提出了一种新颖的多跳定位方法。基于网格扫描(MLGS)的定位算法。首先,研究了影响多跳距离估计的因素,并建立了更现实的多跳定位模型。然后,根据边界正方形环的交点确定法线节点的可行区域。最后,开发了一种基于网格扫描的可验证的近似方案来估计法线节点的坐标。此外,可以通过邻居的协作来提高正常节点的定位精度。在各向同性和各向异性网络中进行了广泛的仿真。与一些典型的节点定位算法的比较证实了我们算法的有效性和效率。

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