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D4V: a peer-to-peer architecture for data dissemination in smartphone-based vehicular applications

机译:D4V:点对点架构,用于基于智能手机的车辆应用中的数据分发

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Vehicular data collection applications are emerging as an appealing technology to monitor urban areas, where a high concentration of connected vehicles with onboard sensors is a near future scenario. In this context, smartphones are, on one side, effective enablers of Vehicle-to-Vehicle (V2V) and Vehicle-to-Infrastructure (V2I) applications and, on the other side, highly sophisticated sensing platforms. In this paper, we introduce an effective and efficient system, denoted as D4V, to disseminate vehicle-related information and sensed data using smartphones as V2I devices. D4V relies on a Peer-to-Peer (P2P) overlay scheme, denoted as Distributed Geographic Table (DGT), which unifies the concepts of physical and virtual neighborhoods in a scalable and robust infrastructure for application-level services. First, we investigate the discovery procedure of the DGT overlay network, through analytical and simulation results. Then, we present and discuss an extensive simulation-based performance evaluation (considering relevant performance indicators) of the D4V system, in a 4G wireless communication scenario. The simulation methodology combines DEUS (an application-level simulation tool for the study of large-scale systems) with ns-3 (a well-known network simulator, which takes into account lower layers), in order to provide a D4V proof-of-concept. The observed results show that D4V-based information sharing among vehicles allows to significantly reduce risks and nuisances (e.g., due to road defects and congestions).
机译:车载数据收集应用程序正在成为一种吸引人的技术来监控城市区域,在这种情况下,带有车载传感器的联网汽车高度集中在不久的将来。在这种情况下,智能手机一方面是车对车(V2V)和车对基础设施(V2I)应用的有效推动者,另一方面又是高度复杂的传感平台。在本文中,我们介绍了一种有效且高效的系统,称为D4V,用于使用智能手机作为V2I设备来传播与车辆相关的信息和感测到的数据。 D4V依赖于对等(P2P)覆盖方案,称为分布式地理表(DGT),该方案在可伸缩且健壮的基础架构中统一了物理和虚拟邻域的概念,以用于应用程序级服务。首先,我们通过分析和仿真结果来研究DGT覆盖网络的发现过程。然后,我们介绍并讨论在4G无线通信情况下D4V系统基于模拟的广泛性能评估(考虑相关性能指标)。该仿真方法将DEUS(用于研究大型系统的应用程序级仿真工具)与ns-3(著名的网络仿真器,考虑了较低的层)相结合,以提供D4V证明-概念。观察到的结果表明,车辆之间基于D4V的信息共享可以显着降低风险和滋扰(例如,由于道路缺陷和拥堵)。

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