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Impact of the Smart City Architecture, Speed and Traffic Density of Vehicles on the Performances of Vanets

机译:智能城市建筑,车辆速度和交通密度对Vanette性能的影响

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摘要

Vehicular Ad-hoc Networks (VANET) is one of the emerging and actual research fields in automotive companies and Intelligent Transportation Systems (ITS) designers. In the Smart City the presence of such networks opens the way for a wide range of applications such as safety applications, mobility and connectivity for both driver and passengers to exploit the transport systems in a smoothly efficiently and safer way. The 802.1 Ip is a draft amendment to the IEEE 802.11 standard for vehicular communications. VANET are characterized by a dynamic topology triggered by the vehiculars mobility. In the Smart City the main problems of inter-vehicle communication are the speed, density of vehicles and the size of the buildings. For this purpose, we first examine and then display the simulation findings of the impact of different radio propagation models on the performance of vehicular ad hoc networks in terms of the characteristics of the physical layer. In our study, we have compared the performances of two routing protocols (AODV and OLSR) for three propagation model (two-Ray ground. Rice and Nakagami). We study those protocols under varying metrics such as Traffic density, Smart City Architecture (size of the scenario areas) and the mobility of vehicle. Our objective is to provide a qualitative assessment of the protocols applicability in different vehicular scenarios. These two routing protocols are simulated and compared with Network Simulator-2 under Manhattan Grid Mobility Model. To conclude, the simulation findings are to be taken as a strong reference on the three routing protocols behaviour; however, it shouldn't be considered as an exact representation of its behaviour and real environment because of several simulation constraints such as: the dimension of movement field of vehiculars, the traffic type and the simulation timing.
机译:车载自组织网络(VANET)是汽车公司和智能运输系统(ITS)设计人员中新兴的和实际的研究领域之一。在智慧城市中,此类网络的存在为各种应用打开了道路,例如安全应用,驾驶员和乘客的移动性和连接性,从而使他们可以顺利高效,更安全地开发运输系统。 802.1 Ip是对用于车辆通信的IEEE 802.11标准的修订草案。 VANET的特征是由车辆移动性触发的动态拓扑。在智慧城市中,车辆间通信的主要问题是速度,车辆密度和建筑物大小。为此,我们首先根据物理层的特性检查然后显示不同无线电传播模型对车辆自组织网络性能的影响的仿真发现。在我们的研究中,我们比较了两种路由协议(AODV和OLSR)在三种传播模型(两线地面,赖斯和中上)的性能。我们在各种指标下研究这些协议,例如交通密度,智慧城市建筑(场景区域的大小)和车辆的机动性。我们的目标是对协议在不同车辆场景下的适用性进行定性评估。在曼哈顿网格移动模型下,对这两种路由协议进行了仿真,并与Network Simulator-2进行了比较。总之,仿真结果将作为三种路由协议行为的有力参考。但是,由于一些模拟约束,例如,车辆运动场的尺寸,交通类型和模拟时间,因此不应将其视为其行为和实际环境的精确表示。

著录项

  • 来源
    《Journal of computer sciences》 |2017年第11期|633-646|共14页
  • 作者单位

    Department of Computer, Information and Communication Systems Engineering Research Group, Moulay Ismail University, Higher School of Technology;

    Department of Computer, Information and Communication Systems Engineering Research Group, Moulay Ismail University, Higher School of Technology;

    Department of Computer, Information and Communication Systems Engineering Research Group, Moulay Ismail University, Higher School of Technology;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Smart City; Routing Protocols; OLSR; AODV; VANET;

    机译:智能城市;路由协议;OLSR;AODV;VANET;

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