VANETs中单跳和多跳信息传播策略的比较研究

S. Busanelli, G. Ferrari, V. Giorgio, Nicola Iotti
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引用次数: 4

摘要

近年来,在学术界、工业界和政府部门的推动下,车载自组织网络(vanet)得到了迅猛的发展。在此基础上,有理由预计VANETs将在不久的将来最终上市。为了取得商业上的成功,vanet必须在部署的头几年有效地运行,因为市场渗透率将不可避免地低,因此只有少数配备适当设备的车辆(启用vanet)将出现在道路上。在面对初始稀疏VANET场景的可能策略中,部署由固定的路旁单元(rsu)组成的辅助网络,无论是分发点(dp)还是中继,当然是一个有希望的策略。为了使这种支持基础设施提供的好处最大化,需要仔细研究rsu的位置。在这项工作中,我们通过数值模拟的方法分析了利用有限数量的dp向过境车辆传播信息的应用程序的性能。通过最近提出的一系列最优放置算法,在适当生成(通过模拟)车辆移动轨迹的基础上确定DPs的位置。分析考虑了两个现实的城市场景。在这两种情况下,使用多跳广播协议带来的性能改进,相对于与dp的经典单跳通信,进行了研究。
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Comparative investigation of single-hop and multi-hop broadcast strategies for information dissemination in VANETs
In recent years, Vehicular Ad-hoc NETworks (VANETs) have experienced an intense development, driven by academia, industry, and public authorities. On the basis of this, it is reasonable to expect that VANETs will finally hit the market in the near future. In order to reach commercial success, VANETs must effectively operate also during the first years of deployment, when the market penetration rate will be unavoidably low and, consequently, only a small number of suitably equipped vehicles (VANET-enabled) will be present in the roads. Among the possible strategies to face the initial sparse VANET scenarios, the deployment of an auxiliary network constituted by fixed Road Side Units (RSUs), either Dissemination Points (DPs) or relays, is certainly a promising one. In order to maximize the benefits offered by this support infrastructure, the placement of RSUs needs to be carefully studied. In this work, we analyze, by means of numerical simulations, the performance of an application that leverages on a finite number of DPs for disseminating information to the transiting vehicles. The positions of the DPs are determined through a recently proposed family of optimal placement algorithms, on the basis of properly generated (through simulations) vehicular mobility traces. The analysis is carried out considering two realistic urban scenarios. In both cases, the performance improvement brought by the use of multi-hop broadcast protocols, with respect to classical single-hop communications with DPs, is investigated.
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