Improving sensor network localization accuracy via mobility

D. Carboni, A. Gasparri, G. Ulivi
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引用次数: 2

Abstract

In this work the Network Localization Problem with noisy measurements and mobility is considered. In particular, we first focus on the discovery of the localizable subnetwork by introducing an iterative approach to detect and merge small localizable components. Furthermore, we propose a novel check to mitigate the risk of flips ambiguities in order to enlarge the aforementioned subnetwork. Successively, we introduce the concept of critical node, and adopt an iterative localization scheme to retrieve information about the relevance of a node. This allows us to investigate how the accuracy of the localization process can be improved by the aid of mobility, i.e., critical nodes which are relevant for the localization of the network can be localized by means of mobile nodes. Simulations are provided to show the effectiveness of the proposed approach.
通过移动性提高传感器网络定位精度
本文研究了带噪声测量和移动的网络定位问题。特别地,我们首先通过引入一种迭代方法来检测和合并小的可本地化组件来关注可本地化子网的发现。此外,我们提出了一种新的检查来降低翻转模糊的风险,以扩大上述子网。随后,我们引入关键节点的概念,并采用迭代定位方案检索节点的相关信息。这使我们能够研究如何通过移动性的帮助来提高定位过程的准确性,即,与网络定位相关的关键节点可以通过移动节点进行定位。仿真结果表明了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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