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A new analytical model for highway inter-vehicle communication systems

机译:一种新的车辆间通信系统的新分析模型

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In Vehicular Ad Hoc Networks (VANETs), vehicles along highways can be grouped into clusters. The design of VANET clusters (i.e., size and geographical span) depends on the packet collision in MAC layer, the wireless channel conditions in PHY layer, and the mobility of the vehicles. Existing works investigated these effects separately. In this paper, we present a comprehensive analysis that combines these three important factors into one model. In particular, we model an unsaturated VANET cluster with a Markov chain by introducing an idle state. The wireless channel fading and vehicle mobility are integrated by explicitly deriving the joint distribution of inter-vehicle distances. Closed-form expressions of network performance measures, i.e., packet loss probability and system throughput, are derived. The proposed analytic model, validated by simulations, is able to accurately characterize VANET performance. Our model can be applied to the design of VANET clusters, and reveals a number of insights that provide guidelines for VANETs design and management.
机译:在车辆临时网络(VANET)中,沿高速公路的车辆可以分组成簇。 VANET集群(即,尺寸和地理跨度)的设计取决于MAC层中的分组碰撞,PHY层中的无线信道条件以及车辆的移动性。现有工程分别调查了这些效果。在本文中,我们提出了一个综合分析,将这三个重要因素结合在一个模型中。特别是,我们通过引入空闲状态模拟与马尔可夫链的不饱和Vanet集群。通过明确地导出车辆间距离的联合分布,整合无线通道衰落和车辆移动性。派生网络性能测量,即丢包概率和系统吞吐量的闭合形式表达。通过模拟验证的建议的分析模型能够准确地表征Vanet性能。我们的模型可以应用于Vanet集群的设计,并揭示了许多洞察力,为Vanets设计和管理提供了指导性。

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