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Analytical Modeling of Distributed Location Based Access for Vehicular Ad Hoc Networks

机译:基于分布式定位的车载ad Hoc网络分析建模

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摘要

One of the key ingredients of Intelligent Transportation Systems (ITS) is delivery of broadcast status messages among vehicles for safety purposes. This requires an efficient Medium Access Control (MAC) that provides low average delay and high reliability. To this end, Carrier Sense Multiple Access (CSMA) has been commonly proposed for Vehicle Ad Hoc Networks (VANETs). Nevertheless, the hidden-node problem can jeopardize the reliability of CSMA, whereas the latency when accessing the channel can be unbounded. To overcome these limitations, resource allocation based on the geo-location of the vehicles can be applied in VANETs. For example, a distributed location based access (DLOC) algorithm has been proposed such that vehicles access orthogonal resource blocks based on their position, aiming at maximizing the distance of co-channel transmitters. In this paper we propose a stochastic geometry approach to analyze DLOC taking into account path loss and fading as well as the random location of transmitting vehicles. Analytical results include the average interference, average binary rate and capture probability, i.e. probability of successful message transmission. It is shown that increasing the number of RBs increases reliability but there is a trade off between reliability and average BR.
机译:智能运输系统(ITS)的关键要素之一是出于安全目的在车辆之间传递广播状态消息。这需要提供低平均延迟和高可靠性的有效媒体访问控制(MAC)。为此,通常已经针对车辆自组织网络(VANET)提出了载波侦听多路访问(CSMA)。但是,隐藏节点问题可能会危害CSMA的可靠性,而访问信道时的延迟可能是无限的。为了克服这些限制,可以将基于车辆地理位置的资源分配应用于VANET。例如,已经提出了分布式的基于位置的接入(DLOC)算法,使得车辆基于它们的位置来访问正交资源块,旨在最大化同信道发射机的距离。在本文中,我们提出了一种随机几何方法来分析DLOC,同时考虑了路径损耗和衰落以及传输车辆的随机位置。分析结果包括平均干扰,平均二进制速率和捕获概率,即成功传输消息的概率。结果表明,增加RB的数量可以提高可靠性,但是在可靠性和平均BR之间需要权衡。

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