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Design and Analysis of a General Relay-Node Selection Mechanism on Intersection in Vehicular Networks

机译:车辆网络交叉口通用中继节点选择机制的设计与分析

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摘要

Employment of a relay node can extend the coverage of a message in vehicular networks (VNET). In addition, the prior information regarding the road structure, which determines the structure of VNET, can benefit relay-node selection. However, the non-line-of-sight (NLOS) communication in the intersection scenarios and diverse shapes for the intersection hamper the design of a general relay-node selection on intersection. To resolve this problem, in this paper, we build a model to describe the general intersection, and propose a general relay-node selection method on intersection. Additionally, based on our mathematical description of the general intersection, the performance models for the general relay-node selection on the intersection are first explored in terms of message dissemination speed and Packet Delivery Ratio (PDR). The simulation results validate these models and indicate the improvement of our proposal, especially in heavy traffic. The improvement includes, at the high density of 3.0025 vehicles/m, the huge gain of up to 23.35% in terms of message dissemination speed than that of other compared methods and PDR of over 90%.
机译:使用中继节点可以扩展车载网络(VNET)中消息的覆盖范围。另外,确定VNET结构的有关道路结构的先验信息可以使中继节点选择受益。但是,交叉路口场景中的非视距(NLOS)通信以及交叉路口的各种形状阻碍了交叉路口上常规中继节点选择的设计。为了解决这个问题,本文建立了一个描述一般交叉口的模型,并提出了一种一般的交叉口中继节点选择方法。此外,基于我们对一般交叉口的数学描述,首先根据消息的传播速度和分组传输率(PDR)探索了交叉口上常规中继节点选择的性能模型。仿真结果验证了这些模型,并表明了我们的建议的改进,特别是在交通繁忙的情况下。改进之处包括:在密度为3.0025车辆/米的高密度下,与其他比较方法相比,在消息传播速度方面的巨大收益高达23.35%,而PDR则超过90%。

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