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A Graph-based Performance Analysis of the 802.11p MAC Protocol for Safety Communications in Highway Vehicular Ad Hoc Networks

机译:公路车辆自组织网络中用于安全通信的802.11p MAC协议的基于图的性能分析

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We address the performance of the 802.11p protocol in terms of the packet delivery ratio (PDR) and the packet reception ratio (PRR) for broadcasting safety messages in highway environments. Regarding the semi-sparse and intermediate traffic, we try to answer to questions such as what are the upper, dominant and lower bounds of PDR and PRR in each traffic condition? How they may deviate from their average values? and What fraction of vehicles may experience such bounds? To answer to such questions, we propose to consider the communication graph formed among vehicles as a special type of the complex networks and we apply the recently proposed obligatory attachment rule to synthesize such network structures. Then, we compute some of the important structural properties of the communication graph in VANETS including the one-hop and two-hop degree distributions, the clustering coefficient and the average number of common neighbours. Next, we show how these structural properties could be combined with the state-of-the-art medium access control layer performance analysis methods, resulting in a hybrid framework which can be applied to provide the answers to the aforementioned questions. The accuracy of the results obtained through the application of the proposed hybrid framework is discussed through comparison with simulation results. performance evaluation;packet delivery ratio;packet reception ratio;communication graph;one-hop degree
机译:我们针对在高速公路环境中广播安全消息的数据包传送率(PDR)和数据包接收率(PRR)来解决802.11p协议的性能问题。关于半稀疏和中间流量,我们尝试回答以下问题,例如每种流量条件下PDR和PRR的上限,显性和下限是什么?它们如何偏离平均值?以及什么比例的车辆可​​能会遇到这种限制?为了回答这些问题,我们建议将车辆之间形成的通信图视为复杂网络的一种特殊类型,并应用最近提出的强制性附着规则来合成这种网络结构。然后,我们计算了VANETS中通信图的一些重要结构性质,包括一跳和两跳度分布,聚类系数和平均邻居数。接下来,我们将展示如何将这些结构特性与最新的媒体访问控制层性能分析方法相结合,从而形成一个混合框架,该框架可用于提供上述问题的答案。通过与仿真结果进行比较,讨论了通过应用所提出的混合框架获得的结果的准确性。性能评估;分组发送率;分组接收率;通信图;单跳度

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