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首页> 外文期刊>Advances in Electrical and Electronic Engineering >Vehicular Networking Enhancement And Multi-Channel Routing Optimization, Based on Multi-Objective Metric and Minimum Spanning Tree
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Vehicular Networking Enhancement And Multi-Channel Routing Optimization, Based on Multi-Objective Metric and Minimum Spanning Tree

机译:基于多目标指标和最小生成树的车辆联网增强和多通道路由优化

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Vehicular Ad hoc NETworks (VANETs) represent a particular mobile technology that permits the communication among vehicles, offering security and comfort. Nowadays, distributed mobile wireless computing is becoming a very important communications paradigm, due to its flexibility to adapt to different mobile applications. VANETs are a practical example of data exchanging among real mobile nodes. To enable communications within an ad-hoc network, characterized by continuous node movements, routing protocols are needed to react to frequent changes in network topology. In this paper, the attention is focused mainly on the network layer of VANETs, proposing a novel approach to reduce the interference level during mobile transmission, based on the multi-channel nature of IEEE 802.11p (1609.4) standard. In this work a new routing protocol based on Distance Vector algorithm is presented to reduce the delay end to end and to increase packet delivery ratio (PDR) and throughput in VANETs. A new metric is also proposed, based on the maximization of the average Signal-to-Interference Ratio (SIR) level and the link duration probability between two VANET nodes. In order to relieve the effects of the co-channel interference perceived by mobile nodes, transmission channels are switched on a basis of a periodical SIR evaluation. A Network Simulator has been used for implementing and testing the proposed idea.
机译:车载专用网络(VANET)代表一种特定的移动技术,该技术允许车辆之间的通信,从而提供安全性和舒适性。如今,由于分布式移动无线计算具有适应不同移动应用程序的灵活性,因此正成为一种非常重要的通信范例。 VANET是实际移动节点之间数据交换的实际示例。为了启用以连续节点移动为特征的自组织网络内的通信,需要路由协议以对网络拓扑中的频繁更改做出反应。在本文中,注意力主要集中在VANET的网络层上,基于IEEE 802.11p(1609.4)标准的多信道性质,提出了一种减少移动传输期间干扰水平的新颖方法。在这项工作中,提出了一种基于距离矢量算法的新路由协议,以减少端到端的延迟并提高VANET中的数据包传输率(PDR)和吞吐量。基于平均信号干扰比(SIR)级别的最大化和两个VANET节点之间的链路持续时间概率,还提出了一种新的度量标准。为了减轻移动节点感知到的同信道干扰的影响,在定期SIR评估的基础上切换传输信道。网络模拟器已用于实现和测试所提出的想法。

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