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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Analysis and Improvement of Reliability Through Coding for Safety Message Broadcasting in Urban Vehicular Networks
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Analysis and Improvement of Reliability Through Coding for Safety Message Broadcasting in Urban Vehicular Networks

机译:城市车载网络中安全消息广播的编码可靠性分析与改进

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In this paper, we study the impact of obstacles (such as buildings) in the radio propagation in the urban vehicular network's environment. The impact has been realized not only by the network-level performance metrics, but also by the application-level performance metrics. A majority of the existing works consider perfect physical layer, which ignores the impact of path loss and shadowing effect in radio propagation caused by the urban canyon. First, we show that ignoring the impact of obstacles in radio propagation provides very high superficial network-level performance. Second, under obstacle shadowing, we perform analytical analysis and Ns-3 based realistic urban vehicular simulation of current dedicated short-range communication based safety message broadcasting to study the achievable performance of application-level performance metrics. This study reveals the answer of the key question, whether the achieved network-level performance metric is good enough for the safety-critical applications under the acute attenuation in radio propagation in urban environment. Third, we propose opportunistic vehicle-assisted or dedicated road side unit-assisted network coded relaying for improving reliability at road intersection. Simulation results show that the proposed approach improves more than 65% reliability for delay sensitive and around 25% reliability for less delay sensitive applications at intersections.
机译:在本文中,我们研究了障碍物(例如建筑物)对城市车辆网络环境中无线电传播的影响。不仅通过网络级别的性能指标,而且通过应用程序级别的性能指标都实现了影响。现有的大多数工作都考虑了理想的物理层,而忽略了路径损耗和阴影效应对城市峡谷造成的无线电传播的影响。首先,我们证明了忽略障碍物在无线电传播中的影响会提供非常高的浅层网络级性能。其次,在障碍物遮挡下,我们对当前专用的基于短距离通信的安全消息广播进行分析分析和基于Ns-3的现实城市车辆仿真,以研究应用级性能指标的可实现性能。这项研究揭示了关键问题的答案,即在城市环境中无线电传播急剧衰减的情况下,已实现的网络级性能指标是否足以满足安全关键型应用的要求。第三,我们提出机会性的车辆辅助或专用路边单元辅助网络编码中继,以提高路口的可靠性。仿真结果表明,对于交叉路口的时延敏感应用,该方法可将可靠性提高65%以上,对时延敏感度较低的应用则可将可靠性提高约25%。

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