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A New Framework of self-organization of Vehicular Networks

机译:一种新的车辆网络自我组织框架

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Vehicular networks are drawing a great attention from the research community and the automotive industry, where they are beneficial in providing ITS (Intelligent Transportation System) services as well as assisting the drivers on the road. In this context, vehicular networks are based on V2I (Vehicle to Infrastructure) and V2V (Vehicle to Vehicle) communications. The special characteristics of these networks such as high mobility, potentially large scale, and network partitioning introduce several challenges, which greatly impact the deployment of these networks. An efficient solution to these problems is to define a robust self-organizing architecture. Thus, the function of these dynamic networks can be quite improved. In this paper, we introduce a new proactive self-organizing protocol called CSP (Cluster-based Self-organizing Protocol) that uses the geographic clustering and the virtual backbone to structure intelligently the vehicular network. We compare CSP to other self-organizing solution by analyzing its performances using Qualnet simulator. Simulation results show good performance of CSP in terms of architecture stability, overhead and delivery ratio.
机译:车辆网络正在吸引研究界和汽车行业的巨大关注,在那里他们有利于提供其(智能交通系统)服务以及协助道路上的司机。在这种情况下,车辆网络基于V2I(车辆到基础设施)和V2V(车辆到车辆)通信。这些网络的特殊特征如高移动性,潜在大规模和网络分区,介绍了几种挑战,这极大地影响了这些网络的部署。对这些问题的有效解决方案是定义强大的自组织体系结构。因此,可以完全改善这些动态网络的功能。在本文中,我们介绍了一个名为CSP(基于群集的自组织协议)的新的主动自组织协议,它使用地理群集和虚拟骨干声智能地实现车辆网络。我们使用Prynet Simulator分析其表演,将CSP与其他自组织解决方案进行比较。仿真结果表明,在架构稳定性,开销和交付比率方面表现出良好的CSP。

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