Weighted localization in Vehicular Ad Hoc Networks using vehicle-to-vehicle communication

Lina Altoaimy, I. Mahgoub, M. Rathod
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引用次数: 33

Abstract

Vehicular Ad Hoc Networks (VANETs) have attracted the interest of many researchers all over the world. With advances in technologies in wireless networks, vehicles will be able to communicate with each other and roadside units (RSU), to exchange road and traffic information. VANET and many other applications demand a real-time, accurate position of a vehicle; highlighting the importance of accurate localization. A number of methods and protocols have been proposed to fulfill this requirement, However, they have not attained high location accuracy required for VANET safety applications. We propose two new localization methods that assist vehicles in estimating their positions: 1) weighted localization (WL) using signal to interference-noise ratio (SINR) obtained from the exchange messages, and 2) weighted localization using SINR and distance between the neighboring vehicles (WLD). Our methods expand the concept of centroid localization (CL) by assigning a weight to each of the neighboring vehicles' coordinates, based on SINR values and the distance. We develop a simulation program to evaluate our methods against CL and relative span weighted localization (RWL). Our simulation results show that WLD demonstrates a better performance with less average location errors than CL and RWL in varying of densities.
基于车对车通信的车载Ad Hoc网络加权定位
车载自组织网络(VANETs)已经引起了世界各国研究者的广泛关注。随着无线网络技术的进步,车辆之间以及路边单元(RSU)之间将能够相互通信,交换道路和交通信息。VANET和许多其他应用需要实时、准确的车辆位置;强调准确定位的重要性。已经提出了许多方法和协议来满足这一要求,但是,它们没有达到VANET安全应用所需的高定位精度。我们提出了两种新的定位方法来帮助车辆估计自己的位置:1)加权定位(WL)利用从交换信息中获得的信噪比(SINR), 2)加权定位利用SINR和相邻车辆之间的距离(WLD)。我们的方法扩展了质心定位(CL)的概念,根据SINR值和距离为每个相邻车辆的坐标分配权重。我们开发了一个模拟程序来评估我们的方法对CL和相对跨度加权定位(RWL)。仿真结果表明,在不同密度下,WLD比CL和RWL具有更好的性能和更小的平均定位误差。
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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