基于链路状态路由的优化定位性能分析

T. Takenaka, H. Mineno, Yuichi Tokunaga, N. Miyauchi, T. Mizuno
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引用次数: 6

摘要

通过估计节点位置获得节点定位是无线多跳网络的关键技术。在本文中,我们提出了一种优化的基于链路状态路由(OLSR)的定位(ROULA),它满足以下关键设计要求:(i)与锚节点的独立性,(ii)非凸网络拓扑的鲁棒性,以及(iii)与网络协议的兼容性。ROULA独立于锚节点,可以在非凸网络拓扑中获得正确的节点位置。此外,ROULA兼容OLSR网络协议,并利用多点中继(MPR)节点固有的距离特性。我们揭示了在ROULA中使用的MPR选择和最远2跳节点选择的特点,并描述了这些节点选择如何有助于减少不使用测距设备的定位方案的距离误差。我们通过仿真来指定适当的MPR_COVERAGE,该定义是为了控制OLSR中MPR节点的数量,并对ROULA在非凸网络拓扑和不同锚节点部署半径等不同场景下的性能进行了比较评估。我们的评估证明,ROULA在各种网络场景下都达到了理想的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Analysis of Optimized Link State Routing-based Localization
Node localization obtained by estimating node positions is an essential technique for wireless multi-hop networks. In this paper, we present an optimized link state routing (OLSR)-based localization (ROULA) that satisfies the following key design requirements: (i) independency from anchor nodes, (ii) robustness for non-convex network topology, and(iii) compatibility with network protocol. ROULA is independent from anchor nodes and can obtain the correct node positions in non-convex network topology. In addition, ROULA is compatible with the OLSR network protocol, and it uses the inherent distance characteristic of multipoint relay (MPR) nodes. We reveal the characteristics of MPR selection and the farthest 2-hop node selection used in ROULA, and describe how these node selections contribute to reducing the distance error for a localization scheme without using ranging devices. We used a simulation to specify appropriate MPR_COVERAGE, which is defined to control the number of MPR nodes in OLSR, and give a comparative performance evaluation of ROULA for various scenarios including non-convex network topology and various deployment radii of anchor nodes. Our evaluation proves that ROULA achieves desirable performance in various network scenarios.
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