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Highway Vehicular Delay Tolerant Networks: Information Propagation Speed Properties

机译:公路车辆时延容忍网络:信息传播速度属性

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In this paper, we provide a full analysis of the information propagation speed in bidirectional vehicular delay tolerant networks such as roads or highways. The provided analysis shows that a phase transition occurs concerning the information propagation speed, with respect to the vehicle densities in each direction of the highway. We prove that under a certain threshold, information propagates on average at vehicle speed, while above this threshold, information propagates dramatically faster at a speed that increases quasi-exponentially when the vehicle density increases. We provide the exact expressions of the threshold and of the average information propagation speed near the threshold, in case of finite or infinite radio propagation speed. Furthermore, we investigate in detail the way information propagates under the threshold, and we prove that delay tolerant routing using cars moving on both directions provides a gain in propagation distance, which is bounded by a sublinear power law with respect to the elapsed time, in the referential of the moving cars. Combining these results, we thus obtain a complete picture of the way information propagates in vehicular networks on roads and highways, which may help designing and evaluating appropriate vehicular ad hoc networks routing protocols. We confirm our analytical results using simulations carried out in several environments (The One and Maple).
机译:在本文中,我们对双向车辆延迟容忍网络(例如道路或高速公路)中的信息传播速度进行了全面分析。所提供的分析表明,相对于高速公路各个方向上的车辆密度,发生了与信息传播速度有关的相变。我们证明,在一定阈值下,信息平均以车速传播,而在此阈值之上,信息以更快的速度显着更快地传播,该速度在车辆密度增加时呈准指数增长。在无线电传播速度有限或无限的情况下,我们提供阈值的精确表达式以及接近阈值的平均信息传播速度。此外,我们详细研究了信息在阈值下的传播方式,并证明了使用双向行驶的汽车的延迟容忍路由提供了传播距离的增益,该距离受次线性幂定律相对于经过时间的限制。行驶中的汽车的参照物。结合这些结果,我们可以完整地了解信息在道路和高速公路上的车载网络中传播的方式,这可能有助于设计和评估合适的车载自组织网络路由协议。我们使用在多个环境(“一个”和“枫”)中进行的模拟来确认分析结果。

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