各向异性传感器网络中虚拟标尺的构造距离估计

Yun Wang, Kai Li, Jie Wu
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引用次数: 18

摘要

距离估计是无线传感器网络许多功能的基础,近年来得到了广泛的研究。距离估计的一个关键挑战是处理传感器网络中的各向异性问题。与各向同性网络相比,各向异性网络由于其性质随测量方向的不同而变化,因此更加难以处理。各向异性是由多种因素造成的,如地理形状、不规则射电模式、节点密度和障碍物的影响。本文研究了传感器网络不规则性的测量问题,并评估了其对距离估计的影响。特别是,我们建立了一个新的度量来测量传感器网络中沿路径的不规则性,并识别考虑路径弯曲的转弯节点。此外,我们还提出了一种构造虚拟标尺的方法来估计任意对传感器节点之间的距离。根据信标节点间的距离测量来构造虚拟标尺。然而,它不要求信标节点在整个传感器网络中统一部署。与现有方法相比,我们的方法既不假设边界识别的全局知识,也不依赖于信标节点的均匀分布。因此,该方法健壮且适用于实际环境。仿真结果表明,该方法优于现有的DVDistance和PDM方法。
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Distance Estimation by Constructing The Virtual Ruler in Anisotropic Sensor Networks
Distance estimation is fundamental for many functionalities of wireless sensor networks and has been studied intensively in recent years. A critical challenge in distance estimation is handling anisotropic problems in sensor networks. Compared with isotropic networks, anisotropic networks are more intractable in that their properties vary according to the directions of measurement. Anisotropic properties result from various factors, such as geographic shapes, irregular radio patterns, node densities, and impacts from obstacles. In this paper, we study the problem of measuring irregularity of sensor networks and evaluating its impact on distance estimation. In particular, we establish a new metric to measure irregularity along a path in sensor networks, and identify turning nodes where a considered path is inflected. Furthermore, we develop an approach to construct a virtual ruler for distance estimation between any pair of sensor nodes. The construction of a virtual ruler is carried out according to distance measurements among beacon nodes. However, it does not require beacon nodes to be deployed uniformly throughout sensor networks. Compared with existing methods, our approach neither assumes global knowledge of boundary recognition nor relies on uniform distribution of beacon nodes. Therefore, this approach is robust and applicable in practical environments. Simulation results show that our approach outperforms some previous methods, such as DVDistance and PDM.
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