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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Concentric Distributed Localization Based on the Tripodal Anchor Structure and Grid Scan for Wireless Sensor Networks
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Concentric Distributed Localization Based on the Tripodal Anchor Structure and Grid Scan for Wireless Sensor Networks

机译:基于三脚架锚结构和网格扫描的无线传感器网络同心分布式定位

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Achieving high accuracy with minimum reference nodes, anchor nodes, and computation and communication costs is a goal for the localization in wireless sensor networks. Targeting at this goal, a localization scheme called concentric distributed localization with the tripodal anchor structure and grid scan (CDL-TAGS) requiring two reference nodes and a few anchor nodes is proposed in this paper. Under the precondition that the system has randomly distributed normal sensor nodes, a tripodal anchor structure is first designed. With this structure, the localization process is started from the centroid node and then stretched outward to the farthest normal nodes. Based on the two best reference nodes, a virtual point is generated to serve as the third reference node. In the CDL-TAGS scheme, a grid scan algorithm is employed to estimate the position of a normal node. Finally, we show that the communication overhead and time and space complexities among sensor nodes for CDL-TAGS can be kept at a low level. In addition, CDL-TAGS can achieve better accuracy with minimum anchor nodes as compared to some closely related localization schemes in the literature through simulation results.
机译:在最少的参考节点,锚节点以及计算和通信成本的情况下实现高精度是无线传感器网络中定位的目标。针对这一目标,提出了一种三脚架锚结构和网格扫描(CDL-TAGS)的同心分布式定位方法,该方法需要两个参考节点和几个锚节点。在系统随机分布法线传感器节点的前提下,首先设计了三脚架锚结构。通过这种结构,定位过程从质心节点开始,然后向外扩展到最远的法线节点。基于两个最佳参考节点,将生成一个虚拟点以用作第三个参考节点。在CDL-TAGS方案中,采用网格扫描算法来估计正常节点的位置。最后,我们表明,CDL-TAGS的传感器节点之间的通信开销以及时间和空间复杂度可以保持在较低水平。此外,与文献中通过仿真结果得出的一些紧密相关的定位方案相比,CDL-TAGS可以用最少的锚节点实现更高的精度。

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